usp25 cDNA ORF clone, Amphiprion ocellaris(clown anemonefish)

The following usp25 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the usp25 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OAm86784 XM_023281522.1
Latest version!
Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAm86785 XM_023281523.1
Latest version!
Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAm86786 XM_023281524.1
Latest version!
Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAm86787 XM_023281525.1
Latest version!
Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OAm86784
    Clone ID Related Accession (Same CDS sequence) XM_023281522.1
    Accession Version XM_023281522.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3516bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-12-12
    Organism Amphiprion ocellaris(clown anemonefish)
    Product ubiquitin carboxyl-terminal hydrolase 25 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019372944.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Amphiprion ocellaris Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    CAGGACGTAA GTGAGTTCAC TCACAAGCTC CTGGACTGGC TGGAGGATGC CTTCCAGATG
    AAGGCTGAGG AAGACAGGGA GGGCGAGAAG CCAAAGAACC CCATGGTGGA GCTTTTCTAC
    GGTCGCTTCC TTGCTGTGGG TGTCCTGGAA GGTAAAAAAT TTGAAAACAC AGAGATGTTT
    GGACAGTACC CCCTGCAGGT GAACGGCTTC AAGGACCTCC ACGAGTGTCT CGAAGCAGCA
    ATGATCGAGG GGGAGATTGA GTCCCTGCAC TCAGCAGAGA ACTCTGCCAG GTCTGGACAA
    GAGCACTGGT TCACAGAACT CCCTCCTGTG TTGACCTTTG AGCTGTCAAG ATTTGAGTTC
    AACCAGGCAC TAGGACGACC TGAGAAGATC CACAACAAGC TTGAGTTCCC CTCCATGCTC
    TACATGGACA GGTACATGGA CAGGAACAGG GAAATAACCA GGATCAAGAG AGAGGAGATC
    AGGAGGCTGA AAGAGCATCT GACACTGCTC CAACAGCGAC TGGAGAGGTA TCTGAGTTAT
    GGCTCAGGCC CCAAGAGGTT TCCTCTGGCA GATGTCCTCC AGTATGCCAT GGAGTTTGCC
    TCCAGTAAAC CTGTGTGTAC ATCCCCAGTG GAAGACATTG ACACATCAGC GCCTCCTGGA
    GGCACAACAG GGCAACAACT GCCCCCACCA AGCACAGCTG AGCAGGACTC CTTACCTCCC
    TTAGAGAGCT CAGGCCCTGC TTCAGGTCCC ACCACAGCTA CCACTGCACC CCAGCAGCAG
    AGAGTACCCA TTCATAAGCC CTTCACCCAG TCCCGACTAC CTCCCGACAT CCCTATGCAC
    CCTGCTCCCC GCCATATCAC AGAAGAAGAG TTGAGGGTGC TCGAGGGCTG CTTGCATCGC
    TGGAGGAGTG AAGTGGAAAA CGATACCCGT GATCTGCAGG GCAGTATAAC CAGAATCCAA
    AGAACCATTG AACTAATGTA CTCTGACAAA TCTATGATGC AGGTTCCATA CCGGCTTCAC
    GCAGTGCTGG TCCATGAAGG CCAGGCCAAT GCAGGTCACT ACTGGGCTTA CATCTACGAC
    CCACATCAGC GTTGCTGGAT GAAGTACAAT GACATTTCGG TCACTAAGTC GTCCTGGGAG
    GAGCTGGTCA GGGATTCTTT TGGAGGCTAC CGCAACGCCA GTGCCTATTG TCTCATGTAC
    ATCAACGACA AGAAGCCATT TCTCATAGAA GAGGAGTTTG ATAAAGAAAC AGGGCAGATA
    CTCAGCGGGA TGGACAAACT GCCTCCAGAC CTGAAGCACT ACGTGAAGGA GGACAATGAA
    CAGTTTGACA AGGAGATTGA AGAGTGGGAC ACCCTGCAGG CTCGCAAGGC CCAACAGGAG
    AAGCTGGCCT TGGCCACAGC AGCAGCAGCA GCTGCTGCCT CAGCAGCATC CAGCACCTCT
    ACTTCTTCTT CTTCCCCTCA GCCCATGAGT ATTGAGTCCA GCCCTCCAGA CAATGCAGTC
    CCCCAGCAGG ACCCAGAGTA CATGGAGCAG CCGTCGCCCA CAAATGACTC CAAGCACCTG
    CAGGAGGACA CGGAGAGGGC CATCTCCCGG GCTGCAGCTG AACAGGAGGA GCGGAGTCCT
    GAAGCATTGT TAAACGCTTC TCTTCCCCCT CCCACCTCCC TTCAGCCTGA GGTCCAGATG
    GGCACTGCCC CTACCCCTCC TCCTGACCTG GTCACAGAGG ATGAGTCCCC TGGCCAGCGC
    ACCGTAGAGG TGGCCATTCC TAACGTGGGG ACCTTTGTTA TTGAGTCAGA GGAGGGGGGT
    TATGATGACG AGACAATGAT GACCCCCAAC ATGCAGGGTA TAATTATGGC CATTGGCAAA
    TCCGGCAGCG TGTATGAAAA GAATGGGCCT GAGGCAGCCT TTTTTAAGGC CATCAAGTTG
    GAGTACGGTC GTCTTCTGAG ATTCGCCCAA GAAGACACAC CACCTGAGAA TGACTACCGT
    CTGCAGCACA TCATTGTCTA CTTCATTCAA AACCAGGCAC CCAAGAAGAT CCTGGAGAGG
    ACTTTGCTTA CACAGTTTGC AGACAGGAAC CTGGCTTTTG ATGAGAGATG TAAGAGTATT
    ATGAATGTGG CACGTGCCAA ACTGGACCTA ATTAAGCCGG AAGAGGTCAA CATGGATGAA
    TATGAGATGT GGCATCAGGA CTACAGGAAT TTCCGTGAGA CAACCATCTT CATGATGACT
    GGCTTGGAGC TCTTCCAGAA AACAAATTAT GTGGAGGCTC TGATGTATCT GGTTTACGCA
    TACCAGTACA ACAAGGAGCT TTTGTTGAAA GGGCTGTACA GAGGGCACGA TGACGAGCTT
    CTTGGACATT ACCGTCGAGA GTGTTTGCTG AAATTGAATG AGCAAGCAGC CGCCATGTTT
    GAGTCAGGAG AAGAACCCGA GGTGACCACA GGCCTCGGCA TCATGAATGA GCTGGTGGTG
    CCCTGCATCC CTCTGCTGCT GCTCCACGAC ACAGAGAGAG ACCTGCTGGC AGTGGAGGAC
    ATGAGGAACC GCTGGTGCTC CTACCTGGGT CAAGAGATGG AATCTAACCT CCAGGAAAAG
    CTGACAGACT TCCTTCCCAA GTTACTGGAC TGCTCTACGG AGATCAAAAG CTTCCACGAC
    CCTCCCAAGC TGCCATCCTA CTCCACCCTG GAGCTGTGTG AACGATTCAG CCGCGTCATG
    GCCGCCCTCG GCAGGGTGCC CTCCGATGGA AGATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_023137290.1
    CDS182..3697
    Translation

    Target ORF information:

    RefSeq Version XM_023281522.1
    Organism Amphiprion ocellaris(clown anemonefish)
    Definition Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023281522.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    CAGGACGTAA GTGAGTTCAC TCACAAGCTC CTGGACTGGC TGGAGGATGC CTTCCAGATG
    AAGGCTGAGG AAGACAGGGA GGGCGAGAAG CCAAAGAACC CCATGGTGGA GCTTTTCTAC
    GGTCGCTTCC TTGCTGTGGG TGTCCTGGAA GGTAAAAAAT TTGAAAACAC AGAGATGTTT
    GGACAGTACC CCCTGCAGGT GAACGGCTTC AAGGACCTCC ACGAGTGTCT CGAAGCAGCA
    ATGATCGAGG GGGAGATTGA GTCCCTGCAC TCAGCAGAGA ACTCTGCCAG GTCTGGACAA
    GAGCACTGGT TCACAGAACT CCCTCCTGTG TTGACCTTTG AGCTGTCAAG ATTTGAGTTC
    AACCAGGCAC TAGGACGACC TGAGAAGATC CACAACAAGC TTGAGTTCCC CTCCATGCTC
    TACATGGACA GGTACATGGA CAGGAACAGG GAAATAACCA GGATCAAGAG AGAGGAGATC
    AGGAGGCTGA AAGAGCATCT GACACTGCTC CAACAGCGAC TGGAGAGGTA TCTGAGTTAT
    GGCTCAGGCC CCAAGAGGTT TCCTCTGGCA GATGTCCTCC AGTATGCCAT GGAGTTTGCC
    TCCAGTAAAC CTGTGTGTAC ATCCCCAGTG GAAGACATTG ACACATCAGC GCCTCCTGGA
    GGCACAACAG GGCAACAACT GCCCCCACCA AGCACAGCTG AGCAGGACTC CTTACCTCCC
    TTAGAGAGCT CAGGCCCTGC TTCAGGTCCC ACCACAGCTA CCACTGCACC CCAGCAGCAG
    AGAGTACCCA TTCATAAGCC CTTCACCCAG TCCCGACTAC CTCCCGACAT CCCTATGCAC
    CCTGCTCCCC GCCATATCAC AGAAGAAGAG TTGAGGGTGC TCGAGGGCTG CTTGCATCGC
    TGGAGGAGTG AAGTGGAAAA CGATACCCGT GATCTGCAGG GCAGTATAAC CAGAATCCAA
    AGAACCATTG AACTAATGTA CTCTGACAAA TCTATGATGC AGGTTCCATA CCGGCTTCAC
    GCAGTGCTGG TCCATGAAGG CCAGGCCAAT GCAGGTCACT ACTGGGCTTA CATCTACGAC
    CCACATCAGC GTTGCTGGAT GAAGTACAAT GACATTTCGG TCACTAAGTC GTCCTGGGAG
    GAGCTGGTCA GGGATTCTTT TGGAGGCTAC CGCAACGCCA GTGCCTATTG TCTCATGTAC
    ATCAACGACA AGAAGCCATT TCTCATAGAA GAGGAGTTTG ATAAAGAAAC AGGGCAGATA
    CTCAGCGGGA TGGACAAACT GCCTCCAGAC CTGAAGCACT ACGTGAAGGA GGACAATGAA
    CAGTTTGACA AGGAGATTGA AGAGTGGGAC ACCCTGCAGG CTCGCAAGGC CCAACAGGAG
    AAGCTGGCCT TGGCCACAGC AGCAGCAGCA GCTGCTGCCT CAGCAGCATC CAGCACCTCT
    ACTTCTTCTT CTTCCCCTCA GCCCATGAGT ATTGAGTCCA GCCCTCCAGA CAATGCAGTC
    CCCCAGCAGG ACCCAGAGTA CATGGAGCAG CCGTCGCCCA CAAATGACTC CAAGCACCTG
    CAGGAGGACA CGGAGAGGGC CATCTCCCGG GCTGCAGCTG AACAGGAGGA GCGGAGTCCT
    GAAGCATTGT TAAACGCTTC TCTTCCCCCT CCCACCTCCC TTCAGCCTGA GGTCCAGATG
    GGCACTGCCC CTACCCCTCC TCCTGACCTG GTCACAGAGG ATGAGTCCCC TGGCCAGCGC
    ACCGTAGAGG TGGCCATTCC TAACGTGGGG ACCTTTGTTA TTGAGTCAGA GGAGGGGGGT
    TATGATGACG AGACAATGAT GACCCCCAAC ATGCAGGGTA TAATTATGGC CATTGGCAAA
    TCCGGCAGCG TGTATGAAAA GAATGGGCCT GAGGCAGCCT TTTTTAAGGC CATCAAGTTG
    GAGTACGGTC GTCTTCTGAG ATTCGCCCAA GAAGACACAC CACCTGAGAA TGACTACCGT
    CTGCAGCACA TCATTGTCTA CTTCATTCAA AACCAGGCAC CCAAGAAGAT CCTGGAGAGG
    ACTTTGCTTA CACAGTTTGC AGACAGGAAC CTGGCTTTTG ATGAGAGATG TAAGAGTATT
    ATGAATGTGG CACGTGCCAA ACTGGACCTA ATTAAGCCGG AAGAGGTCAA CATGGATGAA
    TATGAGATGT GGCATCAGGA CTACAGGAAT TTCCGTGAGA CAACCATCTT CATGATGACT
    GGCTTGGAGC TCTTCCAGAA AACAAATTAT GTGGAGGCTC TGATGTATCT GGTTTACGCA
    TACCAGTACA ACAAGGAGCT TTTGTTGAAA GGGCTGTACA GAGGGCACGA TGACGAGCTT
    CTTGGACATT ACCGTCGAGA GTGTTTGCTG AAATTGAATG AGCAAGCAGC CGCCATGTTT
    GAGTCAGGAG AAGAACCCGA GGTGACCACA GGCCTCGGCA TCATGAATGA GCTGGTGGTG
    CCCTGCATCC CTCTGCTGCT GCTCCACGAC ACAGAGAGAG ACCTGCTGGC AGTGGAGGAC
    ATGAGGAACC GCTGGTGCTC CTACCTGGGT CAAGAGATGG AATCTAACCT CCAGGAAAAG
    CTGACAGACT TCCTTCCCAA GTTACTGGAC TGCTCTACGG AGATCAAAAG CTTCCACGAC
    CCTCCCAAGC TGCCATCCTA CTCCACCCTG GAGCTGTGTG AACGATTCAG CCGCGTCATG
    GCCGCCCTCG GCAGGGTGCC CTCCGATGGA AGATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAm86785
    Clone ID Related Accession (Same CDS sequence) XM_023281523.1
    Accession Version XM_023281523.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3513bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-12-12
    Organism Amphiprion ocellaris(clown anemonefish)
    Product ubiquitin carboxyl-terminal hydrolase 25 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019372944.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Amphiprion ocellaris Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    GACGTAAGTG AGTTCACTCA CAAGCTCCTG GACTGGCTGG AGGATGCCTT CCAGATGAAG
    GCTGAGGAAG ACAGGGAGGG CGAGAAGCCA AAGAACCCCA TGGTGGAGCT TTTCTACGGT
    CGCTTCCTTG CTGTGGGTGT CCTGGAAGGT AAAAAATTTG AAAACACAGA GATGTTTGGA
    CAGTACCCCC TGCAGGTGAA CGGCTTCAAG GACCTCCACG AGTGTCTCGA AGCAGCAATG
    ATCGAGGGGG AGATTGAGTC CCTGCACTCA GCAGAGAACT CTGCCAGGTC TGGACAAGAG
    CACTGGTTCA CAGAACTCCC TCCTGTGTTG ACCTTTGAGC TGTCAAGATT TGAGTTCAAC
    CAGGCACTAG GACGACCTGA GAAGATCCAC AACAAGCTTG AGTTCCCCTC CATGCTCTAC
    ATGGACAGGT ACATGGACAG GAACAGGGAA ATAACCAGGA TCAAGAGAGA GGAGATCAGG
    AGGCTGAAAG AGCATCTGAC ACTGCTCCAA CAGCGACTGG AGAGGTATCT GAGTTATGGC
    TCAGGCCCCA AGAGGTTTCC TCTGGCAGAT GTCCTCCAGT ATGCCATGGA GTTTGCCTCC
    AGTAAACCTG TGTGTACATC CCCAGTGGAA GACATTGACA CATCAGCGCC TCCTGGAGGC
    ACAACAGGGC AACAACTGCC CCCACCAAGC ACAGCTGAGC AGGACTCCTT ACCTCCCTTA
    GAGAGCTCAG GCCCTGCTTC AGGTCCCACC ACAGCTACCA CTGCACCCCA GCAGCAGAGA
    GTACCCATTC ATAAGCCCTT CACCCAGTCC CGACTACCTC CCGACATCCC TATGCACCCT
    GCTCCCCGCC ATATCACAGA AGAAGAGTTG AGGGTGCTCG AGGGCTGCTT GCATCGCTGG
    AGGAGTGAAG TGGAAAACGA TACCCGTGAT CTGCAGGGCA GTATAACCAG AATCCAAAGA
    ACCATTGAAC TAATGTACTC TGACAAATCT ATGATGCAGG TTCCATACCG GCTTCACGCA
    GTGCTGGTCC ATGAAGGCCA GGCCAATGCA GGTCACTACT GGGCTTACAT CTACGACCCA
    CATCAGCGTT GCTGGATGAA GTACAATGAC ATTTCGGTCA CTAAGTCGTC CTGGGAGGAG
    CTGGTCAGGG ATTCTTTTGG AGGCTACCGC AACGCCAGTG CCTATTGTCT CATGTACATC
    AACGACAAGA AGCCATTTCT CATAGAAGAG GAGTTTGATA AAGAAACAGG GCAGATACTC
    AGCGGGATGG ACAAACTGCC TCCAGACCTG AAGCACTACG TGAAGGAGGA CAATGAACAG
    TTTGACAAGG AGATTGAAGA GTGGGACACC CTGCAGGCTC GCAAGGCCCA ACAGGAGAAG
    CTGGCCTTGG CCACAGCAGC AGCAGCAGCT GCTGCCTCAG CAGCATCCAG CACCTCTACT
    TCTTCTTCTT CCCCTCAGCC CATGAGTATT GAGTCCAGCC CTCCAGACAA TGCAGTCCCC
    CAGCAGGACC CAGAGTACAT GGAGCAGCCG TCGCCCACAA ATGACTCCAA GCACCTGCAG
    GAGGACACGG AGAGGGCCAT CTCCCGGGCT GCAGCTGAAC AGGAGGAGCG GAGTCCTGAA
    GCATTGTTAA ACGCTTCTCT TCCCCCTCCC ACCTCCCTTC AGCCTGAGGT CCAGATGGGC
    ACTGCCCCTA CCCCTCCTCC TGACCTGGTC ACAGAGGATG AGTCCCCTGG CCAGCGCACC
    GTAGAGGTGG CCATTCCTAA CGTGGGGACC TTTGTTATTG AGTCAGAGGA GGGGGGTTAT
    GATGACGAGA CAATGATGAC CCCCAACATG CAGGGTATAA TTATGGCCAT TGGCAAATCC
    GGCAGCGTGT ATGAAAAGAA TGGGCCTGAG GCAGCCTTTT TTAAGGCCAT CAAGTTGGAG
    TACGGTCGTC TTCTGAGATT CGCCCAAGAA GACACACCAC CTGAGAATGA CTACCGTCTG
    CAGCACATCA TTGTCTACTT CATTCAAAAC CAGGCACCCA AGAAGATCCT GGAGAGGACT
    TTGCTTACAC AGTTTGCAGA CAGGAACCTG GCTTTTGATG AGAGATGTAA GAGTATTATG
    AATGTGGCAC GTGCCAAACT GGACCTAATT AAGCCGGAAG AGGTCAACAT GGATGAATAT
    GAGATGTGGC ATCAGGACTA CAGGAATTTC CGTGAGACAA CCATCTTCAT GATGACTGGC
    TTGGAGCTCT TCCAGAAAAC AAATTATGTG GAGGCTCTGA TGTATCTGGT TTACGCATAC
    CAGTACAACA AGGAGCTTTT GTTGAAAGGG CTGTACAGAG GGCACGATGA CGAGCTTCTT
    GGACATTACC GTCGAGAGTG TTTGCTGAAA TTGAATGAGC AAGCAGCCGC CATGTTTGAG
    TCAGGAGAAG AACCCGAGGT GACCACAGGC CTCGGCATCA TGAATGAGCT GGTGGTGCCC
    TGCATCCCTC TGCTGCTGCT CCACGACACA GAGAGAGACC TGCTGGCAGT GGAGGACATG
    AGGAACCGCT GGTGCTCCTA CCTGGGTCAA GAGATGGAAT CTAACCTCCA GGAAAAGCTG
    ACAGACTTCC TTCCCAAGTT ACTGGACTGC TCTACGGAGA TCAAAAGCTT CCACGACCCT
    CCCAAGCTGC CATCCTACTC CACCCTGGAG CTGTGTGAAC GATTCAGCCG CGTCATGGCC
    GCCCTCGGCA GGGTGCCCTC CGATGGAAGA TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_023137291.1
    CDS182..3694
    Translation

    Target ORF information:

    RefSeq Version XM_023281523.1
    Organism Amphiprion ocellaris(clown anemonefish)
    Definition Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023281523.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    GACGTAAGTG AGTTCACTCA CAAGCTCCTG GACTGGCTGG AGGATGCCTT CCAGATGAAG
    GCTGAGGAAG ACAGGGAGGG CGAGAAGCCA AAGAACCCCA TGGTGGAGCT TTTCTACGGT
    CGCTTCCTTG CTGTGGGTGT CCTGGAAGGT AAAAAATTTG AAAACACAGA GATGTTTGGA
    CAGTACCCCC TGCAGGTGAA CGGCTTCAAG GACCTCCACG AGTGTCTCGA AGCAGCAATG
    ATCGAGGGGG AGATTGAGTC CCTGCACTCA GCAGAGAACT CTGCCAGGTC TGGACAAGAG
    CACTGGTTCA CAGAACTCCC TCCTGTGTTG ACCTTTGAGC TGTCAAGATT TGAGTTCAAC
    CAGGCACTAG GACGACCTGA GAAGATCCAC AACAAGCTTG AGTTCCCCTC CATGCTCTAC
    ATGGACAGGT ACATGGACAG GAACAGGGAA ATAACCAGGA TCAAGAGAGA GGAGATCAGG
    AGGCTGAAAG AGCATCTGAC ACTGCTCCAA CAGCGACTGG AGAGGTATCT GAGTTATGGC
    TCAGGCCCCA AGAGGTTTCC TCTGGCAGAT GTCCTCCAGT ATGCCATGGA GTTTGCCTCC
    AGTAAACCTG TGTGTACATC CCCAGTGGAA GACATTGACA CATCAGCGCC TCCTGGAGGC
    ACAACAGGGC AACAACTGCC CCCACCAAGC ACAGCTGAGC AGGACTCCTT ACCTCCCTTA
    GAGAGCTCAG GCCCTGCTTC AGGTCCCACC ACAGCTACCA CTGCACCCCA GCAGCAGAGA
    GTACCCATTC ATAAGCCCTT CACCCAGTCC CGACTACCTC CCGACATCCC TATGCACCCT
    GCTCCCCGCC ATATCACAGA AGAAGAGTTG AGGGTGCTCG AGGGCTGCTT GCATCGCTGG
    AGGAGTGAAG TGGAAAACGA TACCCGTGAT CTGCAGGGCA GTATAACCAG AATCCAAAGA
    ACCATTGAAC TAATGTACTC TGACAAATCT ATGATGCAGG TTCCATACCG GCTTCACGCA
    GTGCTGGTCC ATGAAGGCCA GGCCAATGCA GGTCACTACT GGGCTTACAT CTACGACCCA
    CATCAGCGTT GCTGGATGAA GTACAATGAC ATTTCGGTCA CTAAGTCGTC CTGGGAGGAG
    CTGGTCAGGG ATTCTTTTGG AGGCTACCGC AACGCCAGTG CCTATTGTCT CATGTACATC
    AACGACAAGA AGCCATTTCT CATAGAAGAG GAGTTTGATA AAGAAACAGG GCAGATACTC
    AGCGGGATGG ACAAACTGCC TCCAGACCTG AAGCACTACG TGAAGGAGGA CAATGAACAG
    TTTGACAAGG AGATTGAAGA GTGGGACACC CTGCAGGCTC GCAAGGCCCA ACAGGAGAAG
    CTGGCCTTGG CCACAGCAGC AGCAGCAGCT GCTGCCTCAG CAGCATCCAG CACCTCTACT
    TCTTCTTCTT CCCCTCAGCC CATGAGTATT GAGTCCAGCC CTCCAGACAA TGCAGTCCCC
    CAGCAGGACC CAGAGTACAT GGAGCAGCCG TCGCCCACAA ATGACTCCAA GCACCTGCAG
    GAGGACACGG AGAGGGCCAT CTCCCGGGCT GCAGCTGAAC AGGAGGAGCG GAGTCCTGAA
    GCATTGTTAA ACGCTTCTCT TCCCCCTCCC ACCTCCCTTC AGCCTGAGGT CCAGATGGGC
    ACTGCCCCTA CCCCTCCTCC TGACCTGGTC ACAGAGGATG AGTCCCCTGG CCAGCGCACC
    GTAGAGGTGG CCATTCCTAA CGTGGGGACC TTTGTTATTG AGTCAGAGGA GGGGGGTTAT
    GATGACGAGA CAATGATGAC CCCCAACATG CAGGGTATAA TTATGGCCAT TGGCAAATCC
    GGCAGCGTGT ATGAAAAGAA TGGGCCTGAG GCAGCCTTTT TTAAGGCCAT CAAGTTGGAG
    TACGGTCGTC TTCTGAGATT CGCCCAAGAA GACACACCAC CTGAGAATGA CTACCGTCTG
    CAGCACATCA TTGTCTACTT CATTCAAAAC CAGGCACCCA AGAAGATCCT GGAGAGGACT
    TTGCTTACAC AGTTTGCAGA CAGGAACCTG GCTTTTGATG AGAGATGTAA GAGTATTATG
    AATGTGGCAC GTGCCAAACT GGACCTAATT AAGCCGGAAG AGGTCAACAT GGATGAATAT
    GAGATGTGGC ATCAGGACTA CAGGAATTTC CGTGAGACAA CCATCTTCAT GATGACTGGC
    TTGGAGCTCT TCCAGAAAAC AAATTATGTG GAGGCTCTGA TGTATCTGGT TTACGCATAC
    CAGTACAACA AGGAGCTTTT GTTGAAAGGG CTGTACAGAG GGCACGATGA CGAGCTTCTT
    GGACATTACC GTCGAGAGTG TTTGCTGAAA TTGAATGAGC AAGCAGCCGC CATGTTTGAG
    TCAGGAGAAG AACCCGAGGT GACCACAGGC CTCGGCATCA TGAATGAGCT GGTGGTGCCC
    TGCATCCCTC TGCTGCTGCT CCACGACACA GAGAGAGACC TGCTGGCAGT GGAGGACATG
    AGGAACCGCT GGTGCTCCTA CCTGGGTCAA GAGATGGAAT CTAACCTCCA GGAAAAGCTG
    ACAGACTTCC TTCCCAAGTT ACTGGACTGC TCTACGGAGA TCAAAAGCTT CCACGACCCT
    CCCAAGCTGC CATCCTACTC CACCCTGGAG CTGTGTGAAC GATTCAGCCG CGTCATGGCC
    GCCCTCGGCA GGGTGCCCTC CGATGGAAGA TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAm86786
    Clone ID Related Accession (Same CDS sequence) XM_023281524.1
    Accession Version XM_023281524.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3246bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-12-12
    Organism Amphiprion ocellaris(clown anemonefish)
    Product ubiquitin carboxyl-terminal hydrolase 25 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019372944.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Amphiprion ocellaris Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    CAGGACGTAA GTGAGTTCAC TCACAAGCTC CTGGACTGGC TGGAGGATGC CTTCCAGATG
    AAGGCTGAGG AAGACAGGGA GGGCGAGAAG CCAAAGAACC CCATGGTGGA GCTTTTCTAC
    GGTCGCTTCC TTGCTGTGGG TGTCCTGGAA GGTAAAAAAT TTGAAAACAC AGAGATGTTT
    GGACAGTACC CCCTGCAGGT GAACGGCTTC AAGGACCTCC ACGAGTGTCT CGAAGCAGCA
    ATGATCGAGG GGGAGATTGA GTCCCTGCAC TCAGCAGAGA ACTCTGCCAG GTCTGGACAA
    GAGCACTGGT TCACAGAACT CCCTCCTGTG TTGACCTTTG AGCTGTCAAG ATTTGAGTTC
    AACCAGGCAC TAGGACGACC TGAGAAGATC CACAACAAGC TTGAGTTCCC CTCCATGCTC
    TACATGGACA GGTACATGGA CAGGAACAGG GAAATAACCA GGATCAAGAG AGAGGAGATC
    AGGAGGCTGA AAGAGCATCT GACACTGCTC CAACAGCGAC TGGAGAGGTA TCTGAGTTAT
    GGCTCAGGCC CCAAGAGGTT TCCTCTGGCA GATGTCCTCC AGTATGCCAT GGAGTTTGCC
    TCCAGTAAAC CTGTGTGTAC ATCCCCAGTG GAAGACATTG ACACATCAGC GCCTCCTGGA
    GGCACAACAG GGCAACAACT GCCCCCACCA AGCACAGCTG AGCAGGACTC CTTACCTCCC
    TTAGAGAGCT CAGGCCCTGC TTCAGGTCCC ACCACAGCTA CCACTGCACC CCAGCAGCAG
    AGAGTACCCA TTCATAAGCC CTTCACCCAG TCCCGACTAC CTCCCGACAT CCCTATGCAC
    CCTGCTCCCC GCCATATCAC AGAAGAAGAG TTGAGGGTGC TCGAGGGCTG CTTGCATCGC
    TGGAGGAGTG AAGTGGAAAA CGATACCCGT GATCTGCAGG GCAGTATAAC CAGAATCCAA
    AGAACCATTG AACTAATGTA CTCTGACAAA TCTATGATGC AGGTTCCATA CCGGCTTCAC
    GCAGTGCTGG TCCATGAAGG CCAGGCCAAT GCAGGTCACT ACTGGGCTTA CATCTACGAC
    CCACATCAGC GTTGCTGGAT GAAGTACAAT GACATTTCGG TCACTAAGTC GTCCTGGGAG
    GAGCTGGTCA GGGATTCTTT TGGAGGCTAC CGCAACGCCA GTGCCTATTG TCTCATGTAC
    ATCAACGACA AGAAGCCATT TCTCATAGAA GAGGAGTTTG ATAAAGAAAC AGGGCAGATA
    CTCAGCGGGA TGGACAAACT GCCTCCAGAC CTGAAGCACT ACGTGAAGGA GGACAATGAA
    CAGTTTGACA AGGAGATTGA AGAGTGGGAC ACCCTGCAGG CTCGCAAGGC CCAACAGGAG
    AAGCTGGCCT TGGCCACAGC AGCAGCAGCA GCTGCTGCCT CAGCAGCATC CAGCACCTCT
    ACTTCTTCTT CTTCCCCTCA GCCCATGAGT ATTGAGTCCA GCCCTCCAGA CAATGCAGTC
    CCCCAGCAGG ACCCAGAGTA CATGGAGCAG CCGTCGCCCA CAAATGACTC CAAGCACCTG
    CAGGAGGACA CGGAGAGGGC CATCTCCCGG GCTGCAGCTG AACAGGAGGA GCGGAGTCCT
    GAAGCATTGT TAAACGCTGC CATCAAGTTG GAGTACGGTC GTCTTCTGAG ATTCGCCCAA
    GAAGACACAC CACCTGAGAA TGACTACCGT CTGCAGCACA TCATTGTCTA CTTCATTCAA
    AACCAGGCAC CCAAGAAGAT CCTGGAGAGG ACTTTGCTTA CACAGTTTGC AGACAGGAAC
    CTGGCTTTTG ATGAGAGATG TAAGAGTATT ATGAATGTGG CACGTGCCAA ACTGGACCTA
    ATTAAGCCGG AAGAGGTCAA CATGGATGAA TATGAGATGT GGCATCAGGA CTACAGGAAT
    TTCCGTGAGA CAACCATCTT CATGATGACT GGCTTGGAGC TCTTCCAGAA AACAAATTAT
    GTGGAGGCTC TGATGTATCT GGTTTACGCA TACCAGTACA ACAAGGAGCT TTTGTTGAAA
    GGGCTGTACA GAGGGCACGA TGACGAGCTT CTTGGACATT ACCGTCGAGA GTGTTTGCTG
    AAATTGAATG AGCAAGCAGC CGCCATGTTT GAGTCAGGAG AAGAACCCGA GGTGACCACA
    GGCCTCGGCA TCATGAATGA GCTGGTGGTG CCCTGCATCC CTCTGCTGCT GCTCCACGAC
    ACAGAGAGAG ACCTGCTGGC AGTGGAGGAC ATGAGGAACC GCTGGTGCTC CTACCTGGGT
    CAAGAGATGG AATCTAACCT CCAGGAAAAG CTGACAGACT TCCTTCCCAA GTTACTGGAC
    TGCTCTACGG AGATCAAAAG CTTCCACGAC CCTCCCAAGC TGCCATCCTA CTCCACCCTG
    GAGCTGTGTG AACGATTCAG CCGCGTCATG GCCGCCCTCG GCAGGGTGCC CTCCGATGGA
    AGATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_023137292.1
    CDS182..3427
    Translation

    Target ORF information:

    RefSeq Version XM_023281524.1
    Organism Amphiprion ocellaris(clown anemonefish)
    Definition Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023281524.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    CAGGACGTAA GTGAGTTCAC TCACAAGCTC CTGGACTGGC TGGAGGATGC CTTCCAGATG
    AAGGCTGAGG AAGACAGGGA GGGCGAGAAG CCAAAGAACC CCATGGTGGA GCTTTTCTAC
    GGTCGCTTCC TTGCTGTGGG TGTCCTGGAA GGTAAAAAAT TTGAAAACAC AGAGATGTTT
    GGACAGTACC CCCTGCAGGT GAACGGCTTC AAGGACCTCC ACGAGTGTCT CGAAGCAGCA
    ATGATCGAGG GGGAGATTGA GTCCCTGCAC TCAGCAGAGA ACTCTGCCAG GTCTGGACAA
    GAGCACTGGT TCACAGAACT CCCTCCTGTG TTGACCTTTG AGCTGTCAAG ATTTGAGTTC
    AACCAGGCAC TAGGACGACC TGAGAAGATC CACAACAAGC TTGAGTTCCC CTCCATGCTC
    TACATGGACA GGTACATGGA CAGGAACAGG GAAATAACCA GGATCAAGAG AGAGGAGATC
    AGGAGGCTGA AAGAGCATCT GACACTGCTC CAACAGCGAC TGGAGAGGTA TCTGAGTTAT
    GGCTCAGGCC CCAAGAGGTT TCCTCTGGCA GATGTCCTCC AGTATGCCAT GGAGTTTGCC
    TCCAGTAAAC CTGTGTGTAC ATCCCCAGTG GAAGACATTG ACACATCAGC GCCTCCTGGA
    GGCACAACAG GGCAACAACT GCCCCCACCA AGCACAGCTG AGCAGGACTC CTTACCTCCC
    TTAGAGAGCT CAGGCCCTGC TTCAGGTCCC ACCACAGCTA CCACTGCACC CCAGCAGCAG
    AGAGTACCCA TTCATAAGCC CTTCACCCAG TCCCGACTAC CTCCCGACAT CCCTATGCAC
    CCTGCTCCCC GCCATATCAC AGAAGAAGAG TTGAGGGTGC TCGAGGGCTG CTTGCATCGC
    TGGAGGAGTG AAGTGGAAAA CGATACCCGT GATCTGCAGG GCAGTATAAC CAGAATCCAA
    AGAACCATTG AACTAATGTA CTCTGACAAA TCTATGATGC AGGTTCCATA CCGGCTTCAC
    GCAGTGCTGG TCCATGAAGG CCAGGCCAAT GCAGGTCACT ACTGGGCTTA CATCTACGAC
    CCACATCAGC GTTGCTGGAT GAAGTACAAT GACATTTCGG TCACTAAGTC GTCCTGGGAG
    GAGCTGGTCA GGGATTCTTT TGGAGGCTAC CGCAACGCCA GTGCCTATTG TCTCATGTAC
    ATCAACGACA AGAAGCCATT TCTCATAGAA GAGGAGTTTG ATAAAGAAAC AGGGCAGATA
    CTCAGCGGGA TGGACAAACT GCCTCCAGAC CTGAAGCACT ACGTGAAGGA GGACAATGAA
    CAGTTTGACA AGGAGATTGA AGAGTGGGAC ACCCTGCAGG CTCGCAAGGC CCAACAGGAG
    AAGCTGGCCT TGGCCACAGC AGCAGCAGCA GCTGCTGCCT CAGCAGCATC CAGCACCTCT
    ACTTCTTCTT CTTCCCCTCA GCCCATGAGT ATTGAGTCCA GCCCTCCAGA CAATGCAGTC
    CCCCAGCAGG ACCCAGAGTA CATGGAGCAG CCGTCGCCCA CAAATGACTC CAAGCACCTG
    CAGGAGGACA CGGAGAGGGC CATCTCCCGG GCTGCAGCTG AACAGGAGGA GCGGAGTCCT
    GAAGCATTGT TAAACGCTGC CATCAAGTTG GAGTACGGTC GTCTTCTGAG ATTCGCCCAA
    GAAGACACAC CACCTGAGAA TGACTACCGT CTGCAGCACA TCATTGTCTA CTTCATTCAA
    AACCAGGCAC CCAAGAAGAT CCTGGAGAGG ACTTTGCTTA CACAGTTTGC AGACAGGAAC
    CTGGCTTTTG ATGAGAGATG TAAGAGTATT ATGAATGTGG CACGTGCCAA ACTGGACCTA
    ATTAAGCCGG AAGAGGTCAA CATGGATGAA TATGAGATGT GGCATCAGGA CTACAGGAAT
    TTCCGTGAGA CAACCATCTT CATGATGACT GGCTTGGAGC TCTTCCAGAA AACAAATTAT
    GTGGAGGCTC TGATGTATCT GGTTTACGCA TACCAGTACA ACAAGGAGCT TTTGTTGAAA
    GGGCTGTACA GAGGGCACGA TGACGAGCTT CTTGGACATT ACCGTCGAGA GTGTTTGCTG
    AAATTGAATG AGCAAGCAGC CGCCATGTTT GAGTCAGGAG AAGAACCCGA GGTGACCACA
    GGCCTCGGCA TCATGAATGA GCTGGTGGTG CCCTGCATCC CTCTGCTGCT GCTCCACGAC
    ACAGAGAGAG ACCTGCTGGC AGTGGAGGAC ATGAGGAACC GCTGGTGCTC CTACCTGGGT
    CAAGAGATGG AATCTAACCT CCAGGAAAAG CTGACAGACT TCCTTCCCAA GTTACTGGAC
    TGCTCTACGG AGATCAAAAG CTTCCACGAC CCTCCCAAGC TGCCATCCTA CTCCACCCTG
    GAGCTGTGTG AACGATTCAG CCGCGTCATG GCCGCCCTCG GCAGGGTGCC CTCCGATGGA
    AGATGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAm86787
    Clone ID Related Accession (Same CDS sequence) XM_023281525.1
    Accession Version XM_023281525.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3243bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-12-12
    Organism Amphiprion ocellaris(clown anemonefish)
    Product ubiquitin carboxyl-terminal hydrolase 25 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019372944.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Amphiprion ocellaris Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    GACGTAAGTG AGTTCACTCA CAAGCTCCTG GACTGGCTGG AGGATGCCTT CCAGATGAAG
    GCTGAGGAAG ACAGGGAGGG CGAGAAGCCA AAGAACCCCA TGGTGGAGCT TTTCTACGGT
    CGCTTCCTTG CTGTGGGTGT CCTGGAAGGT AAAAAATTTG AAAACACAGA GATGTTTGGA
    CAGTACCCCC TGCAGGTGAA CGGCTTCAAG GACCTCCACG AGTGTCTCGA AGCAGCAATG
    ATCGAGGGGG AGATTGAGTC CCTGCACTCA GCAGAGAACT CTGCCAGGTC TGGACAAGAG
    CACTGGTTCA CAGAACTCCC TCCTGTGTTG ACCTTTGAGC TGTCAAGATT TGAGTTCAAC
    CAGGCACTAG GACGACCTGA GAAGATCCAC AACAAGCTTG AGTTCCCCTC CATGCTCTAC
    ATGGACAGGT ACATGGACAG GAACAGGGAA ATAACCAGGA TCAAGAGAGA GGAGATCAGG
    AGGCTGAAAG AGCATCTGAC ACTGCTCCAA CAGCGACTGG AGAGGTATCT GAGTTATGGC
    TCAGGCCCCA AGAGGTTTCC TCTGGCAGAT GTCCTCCAGT ATGCCATGGA GTTTGCCTCC
    AGTAAACCTG TGTGTACATC CCCAGTGGAA GACATTGACA CATCAGCGCC TCCTGGAGGC
    ACAACAGGGC AACAACTGCC CCCACCAAGC ACAGCTGAGC AGGACTCCTT ACCTCCCTTA
    GAGAGCTCAG GCCCTGCTTC AGGTCCCACC ACAGCTACCA CTGCACCCCA GCAGCAGAGA
    GTACCCATTC ATAAGCCCTT CACCCAGTCC CGACTACCTC CCGACATCCC TATGCACCCT
    GCTCCCCGCC ATATCACAGA AGAAGAGTTG AGGGTGCTCG AGGGCTGCTT GCATCGCTGG
    AGGAGTGAAG TGGAAAACGA TACCCGTGAT CTGCAGGGCA GTATAACCAG AATCCAAAGA
    ACCATTGAAC TAATGTACTC TGACAAATCT ATGATGCAGG TTCCATACCG GCTTCACGCA
    GTGCTGGTCC ATGAAGGCCA GGCCAATGCA GGTCACTACT GGGCTTACAT CTACGACCCA
    CATCAGCGTT GCTGGATGAA GTACAATGAC ATTTCGGTCA CTAAGTCGTC CTGGGAGGAG
    CTGGTCAGGG ATTCTTTTGG AGGCTACCGC AACGCCAGTG CCTATTGTCT CATGTACATC
    AACGACAAGA AGCCATTTCT CATAGAAGAG GAGTTTGATA AAGAAACAGG GCAGATACTC
    AGCGGGATGG ACAAACTGCC TCCAGACCTG AAGCACTACG TGAAGGAGGA CAATGAACAG
    TTTGACAAGG AGATTGAAGA GTGGGACACC CTGCAGGCTC GCAAGGCCCA ACAGGAGAAG
    CTGGCCTTGG CCACAGCAGC AGCAGCAGCT GCTGCCTCAG CAGCATCCAG CACCTCTACT
    TCTTCTTCTT CCCCTCAGCC CATGAGTATT GAGTCCAGCC CTCCAGACAA TGCAGTCCCC
    CAGCAGGACC CAGAGTACAT GGAGCAGCCG TCGCCCACAA ATGACTCCAA GCACCTGCAG
    GAGGACACGG AGAGGGCCAT CTCCCGGGCT GCAGCTGAAC AGGAGGAGCG GAGTCCTGAA
    GCATTGTTAA ACGCTGCCAT CAAGTTGGAG TACGGTCGTC TTCTGAGATT CGCCCAAGAA
    GACACACCAC CTGAGAATGA CTACCGTCTG CAGCACATCA TTGTCTACTT CATTCAAAAC
    CAGGCACCCA AGAAGATCCT GGAGAGGACT TTGCTTACAC AGTTTGCAGA CAGGAACCTG
    GCTTTTGATG AGAGATGTAA GAGTATTATG AATGTGGCAC GTGCCAAACT GGACCTAATT
    AAGCCGGAAG AGGTCAACAT GGATGAATAT GAGATGTGGC ATCAGGACTA CAGGAATTTC
    CGTGAGACAA CCATCTTCAT GATGACTGGC TTGGAGCTCT TCCAGAAAAC AAATTATGTG
    GAGGCTCTGA TGTATCTGGT TTACGCATAC CAGTACAACA AGGAGCTTTT GTTGAAAGGG
    CTGTACAGAG GGCACGATGA CGAGCTTCTT GGACATTACC GTCGAGAGTG TTTGCTGAAA
    TTGAATGAGC AAGCAGCCGC CATGTTTGAG TCAGGAGAAG AACCCGAGGT GACCACAGGC
    CTCGGCATCA TGAATGAGCT GGTGGTGCCC TGCATCCCTC TGCTGCTGCT CCACGACACA
    GAGAGAGACC TGCTGGCAGT GGAGGACATG AGGAACCGCT GGTGCTCCTA CCTGGGTCAA
    GAGATGGAAT CTAACCTCCA GGAAAAGCTG ACAGACTTCC TTCCCAAGTT ACTGGACTGC
    TCTACGGAGA TCAAAAGCTT CCACGACCCT CCCAAGCTGC CATCCTACTC CACCCTGGAG
    CTGTGTGAAC GATTCAGCCG CGTCATGGCC GCCCTCGGCA GGGTGCCCTC CGATGGAAGA
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_023137293.1
    CDS182..3424
    Translation

    Target ORF information:

    RefSeq Version XM_023281525.1
    Organism Amphiprion ocellaris(clown anemonefish)
    Definition Amphiprion ocellaris ubiquitin specific peptidase 25 (usp25), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023281525.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    ATGACCGTGG AGCAGAATGT CCTCCAGCAG CATTCTCAGA AGCACCAGCA GACGCTACTA 
    AACCAGTTGA AGGAGGTCAC AGGCACAACA GACGTTCAGC TGCTTCAGCA GGCACTGCAG
    GTGAGCAATG GAGACCTGGC TGAGGCTGTG GCCTTTCTGA CCGAGAAGAA CGCTAAAGTT
    CCTCAGCAAG ATGAAACTAC CTACTACCAG ACGTCCCAGG TGGCCAGTGA CAGATATATC
    AGTGTGGGCA GCCAAGCAGA CACAAACGTG ATCGATCTGA CTGGGGATGA TAAAGATGAC
    CTGCAGAGGG CTATCGCCCT CAGCCTGGAG GAGTCCAACC GGGCATTCAG GGAGACGGGC
    ATCACTGATG AAGAGCAGGC CATCAGCAGA GTTTTGGAGG CCAGCATAGC AGAGAACAAG
    GCAAGTCTGA AGCGTACCCA CACAGAAGTA TGGAGTGATT CACCCAACCC ACATGACAGG
    AAGAGGATAG ACAACTGCCC TGTGGGTCTG AAAAATGTTG GCAATACCTG CTGGTTCAGT
    GCTGTCATAC AGTCTCTGTT TAACCTGCTG GAGTTCCAGA GGCTTGTGCT CAACTACTCA
    CCGCCAGCCA GAGTCCATGA CCTGCCTCGC AACCAGAAGG AGCACAGAAA CCTGCCCTTC
    ATGCAGGAGC TTCGGAACCT CTTCTCCCTC ATGGTGGGTT CTAAGAGAAA ATATGTGGAT
    CCATCACGAG CTGTGGAAAT CCTGAAAGAC GCCTTCAAGT CCAGCGAGTC ACAGCAGCAG
    GACGTAAGTG AGTTCACTCA CAAGCTCCTG GACTGGCTGG AGGATGCCTT CCAGATGAAG
    GCTGAGGAAG ACAGGGAGGG CGAGAAGCCA AAGAACCCCA TGGTGGAGCT TTTCTACGGT
    CGCTTCCTTG CTGTGGGTGT CCTGGAAGGT AAAAAATTTG AAAACACAGA GATGTTTGGA
    CAGTACCCCC TGCAGGTGAA CGGCTTCAAG GACCTCCACG AGTGTCTCGA AGCAGCAATG
    ATCGAGGGGG AGATTGAGTC CCTGCACTCA GCAGAGAACT CTGCCAGGTC TGGACAAGAG
    CACTGGTTCA CAGAACTCCC TCCTGTGTTG ACCTTTGAGC TGTCAAGATT TGAGTTCAAC
    CAGGCACTAG GACGACCTGA GAAGATCCAC AACAAGCTTG AGTTCCCCTC CATGCTCTAC
    ATGGACAGGT ACATGGACAG GAACAGGGAA ATAACCAGGA TCAAGAGAGA GGAGATCAGG
    AGGCTGAAAG AGCATCTGAC ACTGCTCCAA CAGCGACTGG AGAGGTATCT GAGTTATGGC
    TCAGGCCCCA AGAGGTTTCC TCTGGCAGAT GTCCTCCAGT ATGCCATGGA GTTTGCCTCC
    AGTAAACCTG TGTGTACATC CCCAGTGGAA GACATTGACA CATCAGCGCC TCCTGGAGGC
    ACAACAGGGC AACAACTGCC CCCACCAAGC ACAGCTGAGC AGGACTCCTT ACCTCCCTTA
    GAGAGCTCAG GCCCTGCTTC AGGTCCCACC ACAGCTACCA CTGCACCCCA GCAGCAGAGA
    GTACCCATTC ATAAGCCCTT CACCCAGTCC CGACTACCTC CCGACATCCC TATGCACCCT
    GCTCCCCGCC ATATCACAGA AGAAGAGTTG AGGGTGCTCG AGGGCTGCTT GCATCGCTGG
    AGGAGTGAAG TGGAAAACGA TACCCGTGAT CTGCAGGGCA GTATAACCAG AATCCAAAGA
    ACCATTGAAC TAATGTACTC TGACAAATCT ATGATGCAGG TTCCATACCG GCTTCACGCA
    GTGCTGGTCC ATGAAGGCCA GGCCAATGCA GGTCACTACT GGGCTTACAT CTACGACCCA
    CATCAGCGTT GCTGGATGAA GTACAATGAC ATTTCGGTCA CTAAGTCGTC CTGGGAGGAG
    CTGGTCAGGG ATTCTTTTGG AGGCTACCGC AACGCCAGTG CCTATTGTCT CATGTACATC
    AACGACAAGA AGCCATTTCT CATAGAAGAG GAGTTTGATA AAGAAACAGG GCAGATACTC
    AGCGGGATGG ACAAACTGCC TCCAGACCTG AAGCACTACG TGAAGGAGGA CAATGAACAG
    TTTGACAAGG AGATTGAAGA GTGGGACACC CTGCAGGCTC GCAAGGCCCA ACAGGAGAAG
    CTGGCCTTGG CCACAGCAGC AGCAGCAGCT GCTGCCTCAG CAGCATCCAG CACCTCTACT
    TCTTCTTCTT CCCCTCAGCC CATGAGTATT GAGTCCAGCC CTCCAGACAA TGCAGTCCCC
    CAGCAGGACC CAGAGTACAT GGAGCAGCCG TCGCCCACAA ATGACTCCAA GCACCTGCAG
    GAGGACACGG AGAGGGCCAT CTCCCGGGCT GCAGCTGAAC AGGAGGAGCG GAGTCCTGAA
    GCATTGTTAA ACGCTGCCAT CAAGTTGGAG TACGGTCGTC TTCTGAGATT CGCCCAAGAA
    GACACACCAC CTGAGAATGA CTACCGTCTG CAGCACATCA TTGTCTACTT CATTCAAAAC
    CAGGCACCCA AGAAGATCCT GGAGAGGACT TTGCTTACAC AGTTTGCAGA CAGGAACCTG
    GCTTTTGATG AGAGATGTAA GAGTATTATG AATGTGGCAC GTGCCAAACT GGACCTAATT
    AAGCCGGAAG AGGTCAACAT GGATGAATAT GAGATGTGGC ATCAGGACTA CAGGAATTTC
    CGTGAGACAA CCATCTTCAT GATGACTGGC TTGGAGCTCT TCCAGAAAAC AAATTATGTG
    GAGGCTCTGA TGTATCTGGT TTACGCATAC CAGTACAACA AGGAGCTTTT GTTGAAAGGG
    CTGTACAGAG GGCACGATGA CGAGCTTCTT GGACATTACC GTCGAGAGTG TTTGCTGAAA
    TTGAATGAGC AAGCAGCCGC CATGTTTGAG TCAGGAGAAG AACCCGAGGT GACCACAGGC
    CTCGGCATCA TGAATGAGCT GGTGGTGCCC TGCATCCCTC TGCTGCTGCT CCACGACACA
    GAGAGAGACC TGCTGGCAGT GGAGGACATG AGGAACCGCT GGTGCTCCTA CCTGGGTCAA
    GAGATGGAAT CTAACCTCCA GGAAAAGCTG ACAGACTTCC TTCCCAAGTT ACTGGACTGC
    TCTACGGAGA TCAAAAGCTT CCACGACCCT CCCAAGCTGC CATCCTACTC CACCCTGGAG
    CTGTGTGAAC GATTCAGCCG CGTCATGGCC GCCCTCGGCA GGGTGCCCTC CGATGGAAGA
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.