USP28 cDNA ORF clone, Echinops telfairi(small Madagascar hedgehog)

The following USP28 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the USP28 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
OEc40651 XM_030888397.1
Latest version!
Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OEc40652 XM_030888398.1
Latest version!
Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OEc19829 XM_013007294.1
Latest version!
Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OEc19830 XM_013007295.1
Latest version!
Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OEc40651
    Clone ID Related Accession (Same CDS sequence) XM_030888397.1
    Accession Version XM_030888397.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2562bp)
    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 2019-09-18
    Organism Echinops telfairi(small Madagascar hedgehog)
    Product ubiquitin carboxyl-terminal hydrolase 28 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_022111363.1) 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 :: Echinops telfairi Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 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
    ATGGTGCAGC TATTCTATGG TACTTTCCTG ACCGAAGGGG TTCGTGACGG AAAGCCCTTT 
    TGTAACAATG AGACCTTCGG CCAGTATCCT CTTCAGGTAA ACGGTTATCG CAACCTAGAC
    GAATGTTTGG AAGGGGCCAT GGTGGAAGGT GACGTTGATC CTTCTGATCA TTCAGTGAAA
    TATGGGCAAG AGTGTTGGTT TACAAAGCTA CCTCCAGTGC TGACCTTTGA ACTCTCAAGA
    TTTGAGTTCA ATCAATCCCT TGGTCAGCCA GAGAAAATTC ACAATAAGCT GGAATTTCCT
    CAGATCATTT ATATAGACAG GTACATGTAT AGGAGCAAAG AGCTTATTCG AAGTAAGAGA
    GAGAGTATTC GAAAGTTGAA GGAAGAAATA AAAGTTCTGC AGCAAAAACT GGAAAGGTAT
    GTGAAGTATG GCTCCGGCCC AGCTCGGTTT CCTCTCCCGG ACATGTTAAA GTACGTGATT
    GAATTTGCTA GCACCAAACC TGCCTCAGAA AACTCTCCAT CTCAGAGGGA CTCCAGGGTG
    GCACCACCAC TGTCTTCACT GCACGGCCCG GTTTCTGACC AGACCTCCGA GACAAGTACA
    AATGCAGAAA GCTCTTCTCA GGATGTTGAA CGTACCTTTT CTTCTCCTGA AGATTCTCTG
    CTCAAGTCTA AGATTAAGCC ACTTGCATCC TCTCGGTCCT CCACGGAGAC ACTCGCCCCG
    CCAGCTCCTC GAACAGTCAC AGAGGAGGAG ATGAACTTTG TAAAGACCTG CCTCCAGAGA
    TGGCGGAGTG AGATTGAGCA AGATATACAA GACTTAAAGA ATTGTATCGA GAGCGCGACC
    CGGACTATTG AGCAGATGTA CTGCGATCCT CTGCTCCGTC AGGTGCCTTA CCGCTTGCAT
    GCGGTTCTTG TTCACGAAGG ACAAGCAAAT GCTGGACACT ACTGGGCCTA TATCTATAAT
    CAACCCCGGC AAATCTGGCT CAAGTACAAC GACATCTCTG TTACCGAATC TTCCTGGGAA
    GAACTTGAAA GGGATTCTTA CGGGGGTCTG AGAAACGTCA GTGCTTACTG TCTGATGTAC
    ATTAATGACC AGCTGCCCCA CCACCATGCA GAATCGGGCC CCGATGAGTC CGACCAGATG
    CTGGAAGAGC TGGAGGCCCT GTCTGCGGAG CTGAAGCATT ACATTCAGGA AGACAGCTGG
    AGGCTCGAGC AGGAAGTGGA GGAGTGGGAA GAAGAGCAGT CTTGCAAAAT GCCTCAGATG
    GATTCCTCCA CCAGCTCCTC ACCCCAGGCT TTCTCTCCGT CACCAGAGCC CTCGGTGGCC
    TCTTCTCACG GGGCTCGCTG TTTGTCATCC GAGCATGCTG TGATAGCCAA GGAGCAGACG
    GCCCAGGCCA TTGCTAACAC GGCCCAAGCC TACGAGAAGA GTGGTGTGGA AGCAGCCTTG
    AGTGAGCTCA AGGAAGCTGA AGCTAAGGAG CCCAGGCCTC AGGAATCAAA GCTTGCAGAA
    CAGTCAGACC AGCCCCCACA GGTTAATGAA GCAGAGCCCG CTGCCCAGCC TAACTCTGAG
    GTCTCGGAAG TCGAGATTCC CAGTGTGGGA AGGATTCTGG TTAGATCTGA TGCAGATGGA
    TATGATGAGG AGGTGATGCT GAGCCCTGCC ATGCAAGGGG TCATCCTGGC CATAGCTAAA
    GCCCGCCAGA CTTTTGACCG GGATGGGTCT GAAGCAGGGC TCATCAAGGC ATTCCACGAA
    GAATACTCCA GGCTCTATCA GCTGGCCAAG GAAACACCCA CCTCTCACAG CGATCCTCGC
    CTTCAGCATG TCCTGGTCTA CTTTTTCCAA AATGAAGCCC CCAAAAGGGT GGTGGAGCGG
    ACCCTTTTGG AGCAGTTTGC AGATAAAAAT CTCAGCTATG ATGAAAGGTC AATCCGTATC
    ATGAAGGTGG CTCAGGCTAA ACTGAAGGAA ATCGGTCCGG AGGACATGAA CATGGAGGAG
    TACAAGAAGT GGCATGAAGA TTACAGTTTG TTTCGGAAGG TGTCTGTGTA CCTCCTCACA
    GGCCTGGAAC TCTATCAGAA AGGGAAGTAC CAAGAGGCGC TGTCGTACCT GGTGTACGCG
    TACCAGAGCA ACGCCGCCCT GCTGACGAAG GGGCCCCTCC GGGGGGTGAA GGAGTCCGTC
    ATTGCCCTGT ACCGAAGAAA ATGCCTGCTA GAGCTGAATG CCGAAGCAGC GTCTCTCTTT
    GAGACCAACG ATGACCCCTC TGTCCTGGAG GGCATCAGTG TCATGAACGA GCTGATCATC
    CCTTGCATTC ACCTAATCAT TAATAATGAC ATCTCCAAGG ACGACCTGGA TGCCATCGAG
    GTCATGAGAA ACCATTGGTG CTCTTACCTC GGGCAAGATA TTGCAGAAAA TCTGCAGCTG
    TGCTTAGGGG AATTTCTCCC AAGGCTTCTG GATCCTTCCG CAGAAATCAT TGTCTTGAAG
    GAGCCTCCGA CGATCCGACC CAACTCGCCC TATGACCTCT GCAGCCGGTT TGCAGCCGTC
    ATGGAGTCAA TGCAGGGGGT GTCGACTGTG ACGGTGAAGT AA

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

    RefSeq XP_030744257.1
    CDS220..2781
    Translation

    Target ORF information:

    RefSeq Version XM_030888397.1
    Organism Echinops telfairi(small Madagascar hedgehog)
    Definition Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030888397.1

    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
    ATGGTGCAGC TATTCTATGG TACTTTCCTG ACCGAAGGGG TTCGTGACGG AAAGCCCTTT 
    TGTAACAATG AGACCTTCGG CCAGTATCCT CTTCAGGTAA ACGGTTATCG CAACCTAGAC
    GAATGTTTGG AAGGGGCCAT GGTGGAAGGT GACGTTGATC CTTCTGATCA TTCAGTGAAA
    TATGGGCAAG AGTGTTGGTT TACAAAGCTA CCTCCAGTGC TGACCTTTGA ACTCTCAAGA
    TTTGAGTTCA ATCAATCCCT TGGTCAGCCA GAGAAAATTC ACAATAAGCT GGAATTTCCT
    CAGATCATTT ATATAGACAG GTACATGTAT AGGAGCAAAG AGCTTATTCG AAGTAAGAGA
    GAGAGTATTC GAAAGTTGAA GGAAGAAATA AAAGTTCTGC AGCAAAAACT GGAAAGGTAT
    GTGAAGTATG GCTCCGGCCC AGCTCGGTTT CCTCTCCCGG ACATGTTAAA GTACGTGATT
    GAATTTGCTA GCACCAAACC TGCCTCAGAA AACTCTCCAT CTCAGAGGGA CTCCAGGGTG
    GCACCACCAC TGTCTTCACT GCACGGCCCG GTTTCTGACC AGACCTCCGA GACAAGTACA
    AATGCAGAAA GCTCTTCTCA GGATGTTGAA CGTACCTTTT CTTCTCCTGA AGATTCTCTG
    CTCAAGTCTA AGATTAAGCC ACTTGCATCC TCTCGGTCCT CCACGGAGAC ACTCGCCCCG
    CCAGCTCCTC GAACAGTCAC AGAGGAGGAG ATGAACTTTG TAAAGACCTG CCTCCAGAGA
    TGGCGGAGTG AGATTGAGCA AGATATACAA GACTTAAAGA ATTGTATCGA GAGCGCGACC
    CGGACTATTG AGCAGATGTA CTGCGATCCT CTGCTCCGTC AGGTGCCTTA CCGCTTGCAT
    GCGGTTCTTG TTCACGAAGG ACAAGCAAAT GCTGGACACT ACTGGGCCTA TATCTATAAT
    CAACCCCGGC AAATCTGGCT CAAGTACAAC GACATCTCTG TTACCGAATC TTCCTGGGAA
    GAACTTGAAA GGGATTCTTA CGGGGGTCTG AGAAACGTCA GTGCTTACTG TCTGATGTAC
    ATTAATGACC AGCTGCCCCA CCACCATGCA GAATCGGGCC CCGATGAGTC CGACCAGATG
    CTGGAAGAGC TGGAGGCCCT GTCTGCGGAG CTGAAGCATT ACATTCAGGA AGACAGCTGG
    AGGCTCGAGC AGGAAGTGGA GGAGTGGGAA GAAGAGCAGT CTTGCAAAAT GCCTCAGATG
    GATTCCTCCA CCAGCTCCTC ACCCCAGGCT TTCTCTCCGT CACCAGAGCC CTCGGTGGCC
    TCTTCTCACG GGGCTCGCTG TTTGTCATCC GAGCATGCTG TGATAGCCAA GGAGCAGACG
    GCCCAGGCCA TTGCTAACAC GGCCCAAGCC TACGAGAAGA GTGGTGTGGA AGCAGCCTTG
    AGTGAGCTCA AGGAAGCTGA AGCTAAGGAG CCCAGGCCTC AGGAATCAAA GCTTGCAGAA
    CAGTCAGACC AGCCCCCACA GGTTAATGAA GCAGAGCCCG CTGCCCAGCC TAACTCTGAG
    GTCTCGGAAG TCGAGATTCC CAGTGTGGGA AGGATTCTGG TTAGATCTGA TGCAGATGGA
    TATGATGAGG AGGTGATGCT GAGCCCTGCC ATGCAAGGGG TCATCCTGGC CATAGCTAAA
    GCCCGCCAGA CTTTTGACCG GGATGGGTCT GAAGCAGGGC TCATCAAGGC ATTCCACGAA
    GAATACTCCA GGCTCTATCA GCTGGCCAAG GAAACACCCA CCTCTCACAG CGATCCTCGC
    CTTCAGCATG TCCTGGTCTA CTTTTTCCAA AATGAAGCCC CCAAAAGGGT GGTGGAGCGG
    ACCCTTTTGG AGCAGTTTGC AGATAAAAAT CTCAGCTATG ATGAAAGGTC AATCCGTATC
    ATGAAGGTGG CTCAGGCTAA ACTGAAGGAA ATCGGTCCGG AGGACATGAA CATGGAGGAG
    TACAAGAAGT GGCATGAAGA TTACAGTTTG TTTCGGAAGG TGTCTGTGTA CCTCCTCACA
    GGCCTGGAAC TCTATCAGAA AGGGAAGTAC CAAGAGGCGC TGTCGTACCT GGTGTACGCG
    TACCAGAGCA ACGCCGCCCT GCTGACGAAG GGGCCCCTCC GGGGGGTGAA GGAGTCCGTC
    ATTGCCCTGT ACCGAAGAAA ATGCCTGCTA GAGCTGAATG CCGAAGCAGC GTCTCTCTTT
    GAGACCAACG ATGACCCCTC TGTCCTGGAG GGCATCAGTG TCATGAACGA GCTGATCATC
    CCTTGCATTC ACCTAATCAT TAATAATGAC ATCTCCAAGG ACGACCTGGA TGCCATCGAG
    GTCATGAGAA ACCATTGGTG CTCTTACCTC GGGCAAGATA TTGCAGAAAA TCTGCAGCTG
    TGCTTAGGGG AATTTCTCCC AAGGCTTCTG GATCCTTCCG CAGAAATCAT TGTCTTGAAG
    GAGCCTCCGA CGATCCGACC CAACTCGCCC TATGACCTCT GCAGCCGGTT TGCAGCCGTC
    ATGGAGTCAA TGCAGGGGGT GTCGACTGTG ACGGTGAAGT AA

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

    CloneID OEc40652
    Clone ID Related Accession (Same CDS sequence) XM_030888398.1
    Accession Version XM_030888398.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2142bp)
    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 2019-09-18
    Organism Echinops telfairi(small Madagascar hedgehog)
    Product ubiquitin carboxyl-terminal hydrolase 28 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_022111363.1) 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 :: Echinops telfairi Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 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
    ATGGTGGAAG GTGACGTTGA TCCTTCTGAT CATTCAGTGA AATATGGGCA AGAGTGTTGG 
    TTTACAAAGC TACCTCCAGT GCTGACCTTT GAACTCTCAA GATTTGAGTT CAATCAATCC
    CTTGGTCAGC CAGAGAAAAT TCACAATAAG CTGGAATTTC CTCAGATCAT TTATATAGAC
    AGGTACATGT ATAGGAGCAA AGAGCTTATT CGAAGTAAGA GAGAGAGTAT TCGAAAGTTG
    AAGGAAGAAA TAAAAGTTCT GCAGCAAAAA CTGGAAAGGT ATGTGAAGTA TGGCTCCGGC
    CCAGCTCGGT TTCCTCTCCC GGACATGTTA AAGTACGTGA TTGAATTTGC TAGCACCAAA
    CCTGCCTCAG AAAACTCTCC ATCTCAGAGG GACTCCAGGG TGGCACCACC ACTGTCTTCA
    CTGCACGGCC CGGTTTCTGA CCAGACCTCC GAGACAAGTA CAAATGCAGA AAGCTCTTCT
    CAGGATGTTG AACGTACCTT TTCTTCTCCT GAAGATTCTC TGCTCAAGTC TAAGATTAAG
    CCACTTGCAT CCTCTCGGTC CTCCACGGAG ACACTCGCCC CGCCAGCTCC TCGAACAGTC
    ACAGAGGAGG AGATGAACTT TGTAAAGACC TGCCTCCAGA GATGGCGGAG TGAGATTGAG
    CAAGATATAC AAGACTTAAA GAATTGTATC GAGAGCGCGA CCCGGACTAT TGAGCAGATG
    TACTGCGATC CTCTGCTCCG TCAGGTGCCT TACCGCTTGC ATGCGGTTCT TGTTCACGAA
    GGACAAGCAA ATGCTGGACA CTACTGGGCC TATATCTATA ATCAACCCCG GCAAATCTGG
    CTCAAGTACA ACGACATCTC TGTTACCGAA TCTTCCTGGG AAGAACTTGA AAGGGATTCT
    TACGGGGGTC TGAGAAACGT CAGTGCTTAC TGTCTGATGT ACATTAATGA CCAGCTGCCC
    CACCACCATG CAGAATCGGG CCCCGATGAG TCCGACCAGA TGCTGGAAGA GCTGGAGGCC
    CTGTCTGCGG AGCTGAAGCA TTACATTCAG GAAGACAGCT GGAGGCTCGA GCAGGAAGTG
    GAGGAGTGGG AAGAAGAGCA GTCTTGCAAA ATGCCTCAGA TGGATTCCTC CACCAGCTCC
    TCACCCCAGG CTTTCTCTCC GTCACCAGAG CCCTCGGTGG CCTCTTCTCA CGGGGCTCGC
    TGTTTGTCAT CCGAGCATGC TGTGATAGCC AAGGAGCAGA CGGCCCAGGC CATTGCTAAC
    ACGGCCCAAG CCTACGAGAA GAGTGGTGTG GAAGCAGCCT TGAGTGAGGC ATTCCACGAA
    GAATACTCCA GGCTCTATCA GCTGGCCAAG GAAACACCCA CCTCTCACAG CGATCCTCGC
    CTTCAGCATG TCCTGGTCTA CTTTTTCCAA AATGAAGCCC CCAAAAGGGT GGTGGAGCGG
    ACCCTTTTGG AGCAGTTTGC AGATAAAAAT CTCAGCTATG ATGAAAGGTC AATCCGTATC
    ATGAAGGTGG CTCAGGCTAA ACTGAAGGAA ATCGGTCCGG AGGACATGAA CATGGAGGAG
    TACAAGAAGT GGCATGAAGA TTACAGTTTG TTTCGGAAGG TGTCTGTGTA CCTCCTCACA
    GGCCTGGAAC TCTATCAGAA AGGGAAGTAC CAAGAGGCGC TGTCGTACCT GGTGTACGCG
    TACCAGAGCA ACGCCGCCCT GCTGACGAAG GGGCCCCTCC GGGGGGTGAA GGAGTCCGTC
    ATTGCCCTGT ACCGAAGAAA ATGCCTGCTA GAGCTGAATG CCGAAGCAGC GTCTCTCTTT
    GAGACCAACG ATGACCCCTC TGTCCTGGAG GGCATCAGTG TCATGAACGA GCTGATCATC
    CCTTGCATTC ACCTAATCAT TAATAATGAC ATCTCCAAGG ACGACCTGGA TGCCATCGAG
    GTCATGAGAA ACCATTGGTG CTCTTACCTC GGGCAAGATA TTGCAGAAAA TCTGCAGCTG
    TGCTTAGGGG AATTTCTCCC AAGGCTTCTG GATCCTTCCG CAGAAATCAT TGTCTTGAAG
    GAGCCTCCGA CGATCCGACC CAACTCGCCC TATGACCTCT GCAGCCGGTT TGCAGCCGTC
    ATGGAGTCAA TGCAGGGGGT GTCGACTGTG ACGGTGAAGT AA

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

    RefSeq XP_030744258.1
    CDS106..2247
    Translation

    Target ORF information:

    RefSeq Version XM_030888398.1
    Organism Echinops telfairi(small Madagascar hedgehog)
    Definition Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_030888398.1

    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
    ATGGTGGAAG GTGACGTTGA TCCTTCTGAT CATTCAGTGA AATATGGGCA AGAGTGTTGG 
    TTTACAAAGC TACCTCCAGT GCTGACCTTT GAACTCTCAA GATTTGAGTT CAATCAATCC
    CTTGGTCAGC CAGAGAAAAT TCACAATAAG CTGGAATTTC CTCAGATCAT TTATATAGAC
    AGGTACATGT ATAGGAGCAA AGAGCTTATT CGAAGTAAGA GAGAGAGTAT TCGAAAGTTG
    AAGGAAGAAA TAAAAGTTCT GCAGCAAAAA CTGGAAAGGT ATGTGAAGTA TGGCTCCGGC
    CCAGCTCGGT TTCCTCTCCC GGACATGTTA AAGTACGTGA TTGAATTTGC TAGCACCAAA
    CCTGCCTCAG AAAACTCTCC ATCTCAGAGG GACTCCAGGG TGGCACCACC ACTGTCTTCA
    CTGCACGGCC CGGTTTCTGA CCAGACCTCC GAGACAAGTA CAAATGCAGA AAGCTCTTCT
    CAGGATGTTG AACGTACCTT TTCTTCTCCT GAAGATTCTC TGCTCAAGTC TAAGATTAAG
    CCACTTGCAT CCTCTCGGTC CTCCACGGAG ACACTCGCCC CGCCAGCTCC TCGAACAGTC
    ACAGAGGAGG AGATGAACTT TGTAAAGACC TGCCTCCAGA GATGGCGGAG TGAGATTGAG
    CAAGATATAC AAGACTTAAA GAATTGTATC GAGAGCGCGA CCCGGACTAT TGAGCAGATG
    TACTGCGATC CTCTGCTCCG TCAGGTGCCT TACCGCTTGC ATGCGGTTCT TGTTCACGAA
    GGACAAGCAA ATGCTGGACA CTACTGGGCC TATATCTATA ATCAACCCCG GCAAATCTGG
    CTCAAGTACA ACGACATCTC TGTTACCGAA TCTTCCTGGG AAGAACTTGA AAGGGATTCT
    TACGGGGGTC TGAGAAACGT CAGTGCTTAC TGTCTGATGT ACATTAATGA CCAGCTGCCC
    CACCACCATG CAGAATCGGG CCCCGATGAG TCCGACCAGA TGCTGGAAGA GCTGGAGGCC
    CTGTCTGCGG AGCTGAAGCA TTACATTCAG GAAGACAGCT GGAGGCTCGA GCAGGAAGTG
    GAGGAGTGGG AAGAAGAGCA GTCTTGCAAA ATGCCTCAGA TGGATTCCTC CACCAGCTCC
    TCACCCCAGG CTTTCTCTCC GTCACCAGAG CCCTCGGTGG CCTCTTCTCA CGGGGCTCGC
    TGTTTGTCAT CCGAGCATGC TGTGATAGCC AAGGAGCAGA CGGCCCAGGC CATTGCTAAC
    ACGGCCCAAG CCTACGAGAA GAGTGGTGTG GAAGCAGCCT TGAGTGAGGC ATTCCACGAA
    GAATACTCCA GGCTCTATCA GCTGGCCAAG GAAACACCCA CCTCTCACAG CGATCCTCGC
    CTTCAGCATG TCCTGGTCTA CTTTTTCCAA AATGAAGCCC CCAAAAGGGT GGTGGAGCGG
    ACCCTTTTGG AGCAGTTTGC AGATAAAAAT CTCAGCTATG ATGAAAGGTC AATCCGTATC
    ATGAAGGTGG CTCAGGCTAA ACTGAAGGAA ATCGGTCCGG AGGACATGAA CATGGAGGAG
    TACAAGAAGT GGCATGAAGA TTACAGTTTG TTTCGGAAGG TGTCTGTGTA CCTCCTCACA
    GGCCTGGAAC TCTATCAGAA AGGGAAGTAC CAAGAGGCGC TGTCGTACCT GGTGTACGCG
    TACCAGAGCA ACGCCGCCCT GCTGACGAAG GGGCCCCTCC GGGGGGTGAA GGAGTCCGTC
    ATTGCCCTGT ACCGAAGAAA ATGCCTGCTA GAGCTGAATG CCGAAGCAGC GTCTCTCTTT
    GAGACCAACG ATGACCCCTC TGTCCTGGAG GGCATCAGTG TCATGAACGA GCTGATCATC
    CCTTGCATTC ACCTAATCAT TAATAATGAC ATCTCCAAGG ACGACCTGGA TGCCATCGAG
    GTCATGAGAA ACCATTGGTG CTCTTACCTC GGGCAAGATA TTGCAGAAAA TCTGCAGCTG
    TGCTTAGGGG AATTTCTCCC AAGGCTTCTG GATCCTTCCG CAGAAATCAT TGTCTTGAAG
    GAGCCTCCGA CGATCCGACC CAACTCGCCC TATGACCTCT GCAGCCGGTT TGCAGCCGTC
    ATGGAGTCAA TGCAGGGGGT GTCGACTGTG ACGGTGAAGT AA

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

    CloneID OEc19829
    Clone ID Related Accession (Same CDS sequence) XM_013007294.1
    Accession Version XM_013007294.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3165bp)
    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 2015-06-24
    Organism Echinops telfairi(small Madagascar hedgehog)
    Product ubiquitin carboxyl-terminal hydrolase 28 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004558769.1) 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 Version :: Echinops telfairi Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGCTGTTAA ACCAGCTGCG GGAAATCACA GGCATTCAGG ACCCCTCCTT TCTTCATGAA 
    GCGCTGAAGG CTAGTAACGG TGACATCACA CAGGCTGTCA GTCTTCTCAC AGATGAACGA
    GTTAAGGAGC CCAGTCCCGA CAGCGAGGCC ACAGAGCCAT CCGGCGCAGA GGGGAGTGCT
    GCCAACAAGG AAGCCTTAGC AAAAGTGATA GACCTTACCC ATGATAACAA AGACGATCTT
    CAGGCTGCCA TTGCTTTGAG TCTCCTGGAA TCTCCCAAAA TTCAAGCCGA TGGAAGGGAT
    CTTAACAGGC TGCATGAAGC GACCTCTGTG GACGCCAAGC GCTCCAAGAG AAAGCGATGT
    GAAGTCTGGG GAGAGAATCC GAGTCCCAAC GACTGGAGGA GGGTCGATGG CTGGCCGGTT
    GGTCTGAAAA ACGTTGGCAA TACGTGCTGG TTTAATGCTG TTATTCAGTC CCTCTTCCAA
    TTGCCGGAGT TTCGCAGGCT TGTTCTCAGC TACAGCCTGC CACAGAATGT ACTTGAGACT
    TGTCGAAGCC ACACGGAAAA GAGGAACATC GTGTTTATGC AAGAGCTTCA GTATCTCTTT
    GCTCTGATGA TGGGATCAAA TCGCAAATTT GTAGACCCTT CAGCAGCCCT GGATCTCTTA
    AAGGGAGCAT TCCGGTCGTC TGACGAACAG CAGCAAGATG TGAGTGAATT CACACATAAG
    CTCCTGGACT GGCTGGAGGA CGCGTTCCAG CTAGCTGTTA ATGTGAACAG CAGTAGGTCC
    GAGAACCCGA TGGTGCAGCT ATTCTATGGT ACTTTCCTGA CCGAAGGGGT TCGTGACGGA
    AAGCCCTTTT GTAACAATGA GACCTTCGGC CAGTATCCTC TTCAGGTAAA CGGTTATCGC
    AACCTAGACG AATGTTTGGA AGGGGCCATG GTGGAAGGTG ACGTTGATCC TTCTGATCAT
    TCAGTGAAAT ATGGGCAAGA GTGTTGGTTT ACAAAGCTAC CTCCAGTGCT GACCTTTGAA
    CTCTCAAGAT TTGAGTTCAA TCAATCCCTT GGTCAGCCAG AGAAAATTCA CAATAAGCTG
    GAATTTCCTC AGATCATTTA TATAGACAGG TACATGTATA GGAGCAAAGA GCTTATTCGA
    AGTAAGAGAG AGAGTATTCG AAAGTTGAAG GAAGAAATAA AAGTTCTGCA GCAAAAACTG
    GAAAGGTATG TGAAGTATGG CTCCGGCCCA GCTCGGTTTC CTCTCCCGGA CATGTTAAAG
    TACGTGATTG AATTTGCTAG CACCAAACCT GCCTCAGAAA ACTCTCCATC TCAGAGGGAC
    TCCAGGGTGG CACCACCACT GTCTTCACTG CACGGCCCGG TTTCTGACCA GACCTCCGAG
    ACAAGTACAA ATGCAGAAAG CTCTTCTCAG GATGTTGAAC GTACCTTTTC TTCTCCTGAA
    GATTCTCTGC TCAAGTCTAA GATTAAGCCA CTTGCATCCT CTCGGTCCTC CACGGAGACA
    CTCGCCCCGC CAGCTCCTCG AACAGTCACA GAGGAGGAGA TGAACTTTGT AAAGACCTGC
    CTCCAGAGAT GGCGGAGTGA GATTGAGCAA GATATACAAG ACTTAAAGAA TTGTATCGAG
    AGCGCGACCC GGACTATTGA GCAGATGTAC TGCGATCCTC TGCTCCGTCA GGTGCCTTAC
    CGCTTGCATG CGGTTCTTGT TCACGAAGGA CAAGCAAATG CTGGACACTA CTGGGCCTAT
    ATCTATAATC AACCCCGGCA AATCTGGCTC AAGTACAACG ACATCTCTGT TACCGAATCT
    TCCTGGGAAG AACTTGAAAG GGATTCTTAC GGGGGTCTGA GAAACGTCAG TGCTTACTGT
    CTGATGTACA TTAATGACCA GCTGCCCCAC CACCATGCAG AATCGGGCCC CGATGAGTCC
    GACCAGATGC TGGAAGAGCT GGAGGCCCTG TCTGCGGAGC TGAAGCATTA CATTCAGGAA
    GACAGCTGGA GGCTCGAGCA GGAAGTGGAG GAGTGGGAAG AAGAGCAGTC TTGCAAAATG
    CCTCAGATGG ATTCCTCCAC CAGCTCCTCA CCCCAGGCTT TCTCTCCGTC ACCAGAGCCC
    TCGGTGGCCT CTTCTCACGG GGCTCGCTGT TTGTCATCCG AGCATGCTGT GATAGCCAAG
    GAGCAGACGG CCCAGGCCAT TGCTAACACG GCCCAAGCCT ACGAGAAGAG TGGTGTGGAA
    GCAGCCTTGA GTGAGGTGAT GCTGAGCCCT GCCATGCAAG GGGTCATCCT GGCCATAGCT
    AAAGCCCGCC AGACTTTTGA CCGGGATGGG TCTGAAGCAG GGCTCATCAA GGCATTCCAC
    GAAGAATACT CCAGGCTCTA TCAGCTGGCC AAGGAAACAC CCACCTCTCA CAGCGATCCT
    CGCCTTCAGC ATGTCCTGGT CTACTTTTTC CAAAATGAAG CCCCCAAAAG GGTGGTGGAG
    CGGACCCTTT TGGAGCAGTT TGCAGATAAA AATCTCAGCT ATGATGAAAG GTCAATCCGT
    ATCATGAAGG TGGCTCAGGC TAAACTGAAG GAAATCGGTC CGGAGGACAT GAACATGGAG
    GAGTACAAGA AGTGGCATGA AGATTACAGT TTGTTTCGGA AGGTGTCTGT GTACCTCCTC
    ACAGGCCTGG AACTCTATCA GAAAGGGAAG TACCAAGAGG CGCTGTCGTA CCTGGTGTAC
    GCGTACCAGA GCAACGCCGC CCTGCTGACG AAGGGGCCCC TCCGGGGGGT GAAGGAGTCC
    GTCATTGCCC TGTACCGAAG AAAATGCCTG CTAGAGCTGA ATGCCGAAGC AGCGTCTCTC
    TTTGAGACCA ACGATGACCC CTCTGTCCTG GAGGGCATCA GTGTCATGAA CGAGCTGATC
    ATCCCTTGCA TTCACCTAAT CATTAATAAT GACATCTCCA AGGACGACCT GGATGCCATC
    GAGGTCATGA GAAACCATTG GTGCTCTTAC CTCGGGCAAG ATATTGCAGA AAATCTGCAG
    CTGTGCTTAG GGGAATTTCT CCCAAGGCTT CTGGATCCTT CCGCAGAAAT CATTGTCTTG
    AAGGAGCCTC CGACGATCCG ACCCAACTCG CCCTATGACC TCTGCAGCCG GTTTGCAGCC
    GTCATGGAGT CAATGCAGGG GGTGTCGACT GTGACGGTGA AGTAA

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

    RefSeq XP_012862748.1
    CDS1..3165
    Translation

    Target ORF information:

    RefSeq Version XM_013007294.1
    Organism Echinops telfairi(small Madagascar hedgehog)
    Definition Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013007294.1

    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
    ATGCTGTTAA ACCAGCTGCG GGAAATCACA GGCATTCAGG ACCCCTCCTT TCTTCATGAA 
    GCGCTGAAGG CTAGTAACGG TGACATCACA CAGGCTGTCA GTCTTCTCAC AGATGAACGA
    GTTAAGGAGC CCAGTCCCGA CAGCGAGGCC ACAGAGCCAT CCGGCGCAGA GGGGAGTGCT
    GCCAACAAGG AAGCCTTAGC AAAAGTGATA GACCTTACCC ATGATAACAA AGACGATCTT
    CAGGCTGCCA TTGCTTTGAG TCTCCTGGAA TCTCCCAAAA TTCAAGCCGA TGGAAGGGAT
    CTTAACAGGC TGCATGAAGC GACCTCTGTG GACGCCAAGC GCTCCAAGAG AAAGCGATGT
    GAAGTCTGGG GAGAGAATCC GAGTCCCAAC GACTGGAGGA GGGTCGATGG CTGGCCGGTT
    GGTCTGAAAA ACGTTGGCAA TACGTGCTGG TTTAATGCTG TTATTCAGTC CCTCTTCCAA
    TTGCCGGAGT TTCGCAGGCT TGTTCTCAGC TACAGCCTGC CACAGAATGT ACTTGAGACT
    TGTCGAAGCC ACACGGAAAA GAGGAACATC GTGTTTATGC AAGAGCTTCA GTATCTCTTT
    GCTCTGATGA TGGGATCAAA TCGCAAATTT GTAGACCCTT CAGCAGCCCT GGATCTCTTA
    AAGGGAGCAT TCCGGTCGTC TGACGAACAG CAGCAAGATG TGAGTGAATT CACACATAAG
    CTCCTGGACT GGCTGGAGGA CGCGTTCCAG CTAGCTGTTA ATGTGAACAG CAGTAGGTCC
    GAGAACCCGA TGGTGCAGCT ATTCTATGGT ACTTTCCTGA CCGAAGGGGT TCGTGACGGA
    AAGCCCTTTT GTAACAATGA GACCTTCGGC CAGTATCCTC TTCAGGTAAA CGGTTATCGC
    AACCTAGACG AATGTTTGGA AGGGGCCATG GTGGAAGGTG ACGTTGATCC TTCTGATCAT
    TCAGTGAAAT ATGGGCAAGA GTGTTGGTTT ACAAAGCTAC CTCCAGTGCT GACCTTTGAA
    CTCTCAAGAT TTGAGTTCAA TCAATCCCTT GGTCAGCCAG AGAAAATTCA CAATAAGCTG
    GAATTTCCTC AGATCATTTA TATAGACAGG TACATGTATA GGAGCAAAGA GCTTATTCGA
    AGTAAGAGAG AGAGTATTCG AAAGTTGAAG GAAGAAATAA AAGTTCTGCA GCAAAAACTG
    GAAAGGTATG TGAAGTATGG CTCCGGCCCA GCTCGGTTTC CTCTCCCGGA CATGTTAAAG
    TACGTGATTG AATTTGCTAG CACCAAACCT GCCTCAGAAA ACTCTCCATC TCAGAGGGAC
    TCCAGGGTGG CACCACCACT GTCTTCACTG CACGGCCCGG TTTCTGACCA GACCTCCGAG
    ACAAGTACAA ATGCAGAAAG CTCTTCTCAG GATGTTGAAC GTACCTTTTC TTCTCCTGAA
    GATTCTCTGC TCAAGTCTAA GATTAAGCCA CTTGCATCCT CTCGGTCCTC CACGGAGACA
    CTCGCCCCGC CAGCTCCTCG AACAGTCACA GAGGAGGAGA TGAACTTTGT AAAGACCTGC
    CTCCAGAGAT GGCGGAGTGA GATTGAGCAA GATATACAAG ACTTAAAGAA TTGTATCGAG
    AGCGCGACCC GGACTATTGA GCAGATGTAC TGCGATCCTC TGCTCCGTCA GGTGCCTTAC
    CGCTTGCATG CGGTTCTTGT TCACGAAGGA CAAGCAAATG CTGGACACTA CTGGGCCTAT
    ATCTATAATC AACCCCGGCA AATCTGGCTC AAGTACAACG ACATCTCTGT TACCGAATCT
    TCCTGGGAAG AACTTGAAAG GGATTCTTAC GGGGGTCTGA GAAACGTCAG TGCTTACTGT
    CTGATGTACA TTAATGACCA GCTGCCCCAC CACCATGCAG AATCGGGCCC CGATGAGTCC
    GACCAGATGC TGGAAGAGCT GGAGGCCCTG TCTGCGGAGC TGAAGCATTA CATTCAGGAA
    GACAGCTGGA GGCTCGAGCA GGAAGTGGAG GAGTGGGAAG AAGAGCAGTC TTGCAAAATG
    CCTCAGATGG ATTCCTCCAC CAGCTCCTCA CCCCAGGCTT TCTCTCCGTC ACCAGAGCCC
    TCGGTGGCCT CTTCTCACGG GGCTCGCTGT TTGTCATCCG AGCATGCTGT GATAGCCAAG
    GAGCAGACGG CCCAGGCCAT TGCTAACACG GCCCAAGCCT ACGAGAAGAG TGGTGTGGAA
    GCAGCCTTGA GTGAGGTGAT GCTGAGCCCT GCCATGCAAG GGGTCATCCT GGCCATAGCT
    AAAGCCCGCC AGACTTTTGA CCGGGATGGG TCTGAAGCAG GGCTCATCAA GGCATTCCAC
    GAAGAATACT CCAGGCTCTA TCAGCTGGCC AAGGAAACAC CCACCTCTCA CAGCGATCCT
    CGCCTTCAGC ATGTCCTGGT CTACTTTTTC CAAAATGAAG CCCCCAAAAG GGTGGTGGAG
    CGGACCCTTT TGGAGCAGTT TGCAGATAAA AATCTCAGCT ATGATGAAAG GTCAATCCGT
    ATCATGAAGG TGGCTCAGGC TAAACTGAAG GAAATCGGTC CGGAGGACAT GAACATGGAG
    GAGTACAAGA AGTGGCATGA AGATTACAGT TTGTTTCGGA AGGTGTCTGT GTACCTCCTC
    ACAGGCCTGG AACTCTATCA GAAAGGGAAG TACCAAGAGG CGCTGTCGTA CCTGGTGTAC
    GCGTACCAGA GCAACGCCGC CCTGCTGACG AAGGGGCCCC TCCGGGGGGT GAAGGAGTCC
    GTCATTGCCC TGTACCGAAG AAAATGCCTG CTAGAGCTGA ATGCCGAAGC AGCGTCTCTC
    TTTGAGACCA ACGATGACCC CTCTGTCCTG GAGGGCATCA GTGTCATGAA CGAGCTGATC
    ATCCCTTGCA TTCACCTAAT CATTAATAAT GACATCTCCA AGGACGACCT GGATGCCATC
    GAGGTCATGA GAAACCATTG GTGCTCTTAC CTCGGGCAAG ATATTGCAGA AAATCTGCAG
    CTGTGCTTAG GGGAATTTCT CCCAAGGCTT CTGGATCCTT CCGCAGAAAT CATTGTCTTG
    AAGGAGCCTC CGACGATCCG ACCCAACTCG CCCTATGACC TCTGCAGCCG GTTTGCAGCC
    GTCATGGAGT CAATGCAGGG GGTGTCGACT GTGACGGTGA AGTAA

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

    CloneID OEc19830
    Clone ID Related Accession (Same CDS sequence) XM_013007295.1
    Accession Version XM_013007295.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3069bp)
    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 2015-06-24
    Organism Echinops telfairi(small Madagascar hedgehog)
    Product ubiquitin carboxyl-terminal hydrolase 28 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004558769.1) 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 Version :: Echinops telfairi Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGCTGTTAA ACCAGCTGCG GGAAATCACA GGCATTCAGG ACCCCTCCTT TCTTCATGAA 
    GCGCTGAAGG CTAGTAACGG TGACATCACA CAGGCTGTCA GTCTTCTCAC AGATGAACGA
    GTTAAGGAGC CCAGTCCCGA CAGCGAGGCC ACAGAGCCAT CCGGCGCAGA GGGGAGTGCT
    GCCAACAAGG AAGCCTTAGC AAAAGTGATA GACCTTACCC ATGATAACAA AGACGATCTT
    CAGGCTGCCA TTGCTTTGAG TCTCCTGGAA TCTCCCAAAA TTCAAGCCGA TGGAAGGGAT
    CTTAACAGGC TGCATGAAGC GACCTCTGTG GACGCCAAGC GCTCCAAGAG AAAGCGATGT
    GAAGTCTGGG GAGAGAATCC GAGTCCCAAC GACTGGAGGA GGGTCGATGG CTGGCCGGTT
    GGTCTGAAAA ACGTTGGCAA TACGTGCTGG TTTAATGCTG TTATTCAGTC CCTCTTCCAA
    TTGCCGGAGT TTCGCAGGCT TGTTCTCAGC TACAGCCTGC CACAGAATGT ACTTGAGACT
    TGTCGAAGCC ACACGGAAAA GAGGAACATC GTGTTTATGC AAGAGCTTCA GTATCTCTTT
    GCTCTGATGA TGGGATCAAA TCGCAAATTT GTAGACCCTT CAGCAGCCCT GGATCTCTTA
    AAGGGAGCAT TCCGGTCGTC TGACGAACAG CAGCAAGATG TGAGTGAATT CACACATAAG
    CTCCTGGACT GGCTGGAGGA CGCGTTCCAG CTAGCTGTTA ATGTGAACAG CAGTAGGTCC
    GAGAACCCGA TGGTGCAGCT ATTCTATGGT ACTTTCCTGA CCGAAGGGGT TCGTGACGGA
    AAGCCCTTTT GTAACAATGA GACCTTCGGC CAGTATCCTC TTCAGGTAAA CGGTTATCGC
    AACCTAGACG AATGTTTGGA AGGGGCCATG GTGGAAGGTG ACGTTGATCC TTCTGATCAT
    TCAGTGAAAT ATGGGCAAGA GTGTTGGTTT ACAAAGCTAC CTCCAGTGCT GACCTTTGAA
    CTCTCAAGAT TTGAGTTCAA TCAATCCCTT GGTCAGCCAG AGAAAATTCA CAATAAGCTG
    GAATTTCCTC AGATCATTTA TATAGACAGG TACATGTATA GGAGCAAAGA GCTTATTCGA
    AGTAAGAGAG AGAGTATTCG AAAGTTGAAG GAAGAAATAA AAGTTCTGCA GCAAAAACTG
    GAAAGGTATG TGAAGTATGG CTCCGGCCCA GCTCGGTTTC CTCTCCCGGA CATGTTAAAG
    TACGTGATTG AATTTGCTAG CACCAAACCT GCCTCAGAAA ACTCTCCATC TCAGAGGGAC
    TCCAGGGTGG CACCACCACT GTCTTCACTG CACGGCCCGG TTTCTGACCA GACCTCCGAG
    ACAAGTACAA ATGCAGAAAG CTCTTCTCAG GATGTTGAAC GTACCTTTTC TTCTCCTGAA
    GATTCTCTGC TCAAGTCTAA GATTAAGCCA CTTGCATCCT CTCGGTCCTC CACGGAGACA
    CTCGCCCCGC CAGCTCCTCG AACAGTCACA GAGGAGGAGA TGAACTTTGT AAAGACCTGC
    CTCCAGAGAT GGCGGAGTGA GATTGAGCAA GATATACAAG ACTTAAAGAA TTGTATCGAG
    AGCGCGACCC GGACTATTGA GCAGATGTAC TGCGATCCTC TGCTCCGTCA GGTGCCTTAC
    CGCTTGCATG CGGTTCTTGT TCACGAAGGA CAAGCAAATG CTGGACACTA CTGGGCCTAT
    ATCTATAATC AACCCCGGCA AATCTGGCTC AAGTACAACG ACATCTCTGT TACCGAATCT
    TCCTGGGAAG AACTTGAAAG GGATTCTTAC GGGGGTCTGA GAAACGTCAG TGCTTACTGT
    CTGATGTACA TTAATGACCA GCTGCCCCAC CACCATGCAG AATCGGGCCC CGATGAGTCC
    GACCAGATGC TGGAAGAGCT GGAGGCCCTG TCTGCGGAGC TGAAGCATTA CATTCAGGAA
    GACAGCTGGA GGCTCGAGCA GGAAGTGGAG GAGTGGGAAG AAGAGCAGTC TTGCAAAATG
    CCTCAGATGG ATTCCTCCAC CAGCTCCTCA CCCCAGGCTT TCTCTCCGTC ACCAGAGCCC
    TCGGTGGCCT CTTCTCACGG GGCTCGCTGT TTGTCATCCG AGCATGCTGT GATAGCCAAG
    GAGCAGACGG CCCAGGCCAT TGCTAACACG GCCCAAGCCT ACGAGAAGAG TGGTGTGGAA
    GCAGCCTTGA GTGAGGCATT CCACGAAGAA TACTCCAGGC TCTATCAGCT GGCCAAGGAA
    ACACCCACCT CTCACAGCGA TCCTCGCCTT CAGCATGTCC TGGTCTACTT TTTCCAAAAT
    GAAGCCCCCA AAAGGGTGGT GGAGCGGACC CTTTTGGAGC AGTTTGCAGA TAAAAATCTC
    AGCTATGATG AAAGGTCAAT CCGTATCATG AAGGTGGCTC AGGCTAAACT GAAGGAAATC
    GGTCCGGAGG ACATGAACAT GGAGGAGTAC AAGAAGTGGC ATGAAGATTA CAGTTTGTTT
    CGGAAGGTGT CTGTGTACCT CCTCACAGGC CTGGAACTCT ATCAGAAAGG GAAGTACCAA
    GAGGCGCTGT CGTACCTGGT GTACGCGTAC CAGAGCAACG CCGCCCTGCT GACGAAGGGG
    CCCCTCCGGG GGGTGAAGGA GTCCGTCATT GCCCTGTACC GAAGAAAATG CCTGCTAGAG
    CTGAATGCCG AAGCAGCGTC TCTCTTTGAG ACCAACGATG ACCCCTCTGT CCTGGAGGGC
    ATCAGTGTCA TGAACGAGCT GATCATCCCT TGCATTCACC TAATCATTAA TAATGACATC
    TCCAAGGACG ACCTGGATGC CATCGAGGTC ATGAGAAACC ATTGGTGCTC TTACCTCGGG
    CAAGATATTG CAGAAAATCT GCAGCTGTGC TTAGGGGAAT TTCTCCCAAG GCTTCTGGAT
    CCTTCCGCAG AAATCATTGT CTTGAAGGAG CCTCCGACGA TCCGACCCAA CTCGCCCTAT
    GACCTCTGCA GCCGGTTTGC AGCCGTCATG GAGTCAATGC AGGGGGTGTC GACTGTGACG
    GTGAAGTAA

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

    RefSeq XP_012862749.1
    CDS1..3069
    Translation

    Target ORF information:

    RefSeq Version XM_013007295.1
    Organism Echinops telfairi(small Madagascar hedgehog)
    Definition Echinops telfairi ubiquitin specific peptidase 28 (USP28), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013007295.1

    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
    ATGCTGTTAA ACCAGCTGCG GGAAATCACA GGCATTCAGG ACCCCTCCTT TCTTCATGAA 
    GCGCTGAAGG CTAGTAACGG TGACATCACA CAGGCTGTCA GTCTTCTCAC AGATGAACGA
    GTTAAGGAGC CCAGTCCCGA CAGCGAGGCC ACAGAGCCAT CCGGCGCAGA GGGGAGTGCT
    GCCAACAAGG AAGCCTTAGC AAAAGTGATA GACCTTACCC ATGATAACAA AGACGATCTT
    CAGGCTGCCA TTGCTTTGAG TCTCCTGGAA TCTCCCAAAA TTCAAGCCGA TGGAAGGGAT
    CTTAACAGGC TGCATGAAGC GACCTCTGTG GACGCCAAGC GCTCCAAGAG AAAGCGATGT
    GAAGTCTGGG GAGAGAATCC GAGTCCCAAC GACTGGAGGA GGGTCGATGG CTGGCCGGTT
    GGTCTGAAAA ACGTTGGCAA TACGTGCTGG TTTAATGCTG TTATTCAGTC CCTCTTCCAA
    TTGCCGGAGT TTCGCAGGCT TGTTCTCAGC TACAGCCTGC CACAGAATGT ACTTGAGACT
    TGTCGAAGCC ACACGGAAAA GAGGAACATC GTGTTTATGC AAGAGCTTCA GTATCTCTTT
    GCTCTGATGA TGGGATCAAA TCGCAAATTT GTAGACCCTT CAGCAGCCCT GGATCTCTTA
    AAGGGAGCAT TCCGGTCGTC TGACGAACAG CAGCAAGATG TGAGTGAATT CACACATAAG
    CTCCTGGACT GGCTGGAGGA CGCGTTCCAG CTAGCTGTTA ATGTGAACAG CAGTAGGTCC
    GAGAACCCGA TGGTGCAGCT ATTCTATGGT ACTTTCCTGA CCGAAGGGGT TCGTGACGGA
    AAGCCCTTTT GTAACAATGA GACCTTCGGC CAGTATCCTC TTCAGGTAAA CGGTTATCGC
    AACCTAGACG AATGTTTGGA AGGGGCCATG GTGGAAGGTG ACGTTGATCC TTCTGATCAT
    TCAGTGAAAT ATGGGCAAGA GTGTTGGTTT ACAAAGCTAC CTCCAGTGCT GACCTTTGAA
    CTCTCAAGAT TTGAGTTCAA TCAATCCCTT GGTCAGCCAG AGAAAATTCA CAATAAGCTG
    GAATTTCCTC AGATCATTTA TATAGACAGG TACATGTATA GGAGCAAAGA GCTTATTCGA
    AGTAAGAGAG AGAGTATTCG AAAGTTGAAG GAAGAAATAA AAGTTCTGCA GCAAAAACTG
    GAAAGGTATG TGAAGTATGG CTCCGGCCCA GCTCGGTTTC CTCTCCCGGA CATGTTAAAG
    TACGTGATTG AATTTGCTAG CACCAAACCT GCCTCAGAAA ACTCTCCATC TCAGAGGGAC
    TCCAGGGTGG CACCACCACT GTCTTCACTG CACGGCCCGG TTTCTGACCA GACCTCCGAG
    ACAAGTACAA ATGCAGAAAG CTCTTCTCAG GATGTTGAAC GTACCTTTTC TTCTCCTGAA
    GATTCTCTGC TCAAGTCTAA GATTAAGCCA CTTGCATCCT CTCGGTCCTC CACGGAGACA
    CTCGCCCCGC CAGCTCCTCG AACAGTCACA GAGGAGGAGA TGAACTTTGT AAAGACCTGC
    CTCCAGAGAT GGCGGAGTGA GATTGAGCAA GATATACAAG ACTTAAAGAA TTGTATCGAG
    AGCGCGACCC GGACTATTGA GCAGATGTAC TGCGATCCTC TGCTCCGTCA GGTGCCTTAC
    CGCTTGCATG CGGTTCTTGT TCACGAAGGA CAAGCAAATG CTGGACACTA CTGGGCCTAT
    ATCTATAATC AACCCCGGCA AATCTGGCTC AAGTACAACG ACATCTCTGT TACCGAATCT
    TCCTGGGAAG AACTTGAAAG GGATTCTTAC GGGGGTCTGA GAAACGTCAG TGCTTACTGT
    CTGATGTACA TTAATGACCA GCTGCCCCAC CACCATGCAG AATCGGGCCC CGATGAGTCC
    GACCAGATGC TGGAAGAGCT GGAGGCCCTG TCTGCGGAGC TGAAGCATTA CATTCAGGAA
    GACAGCTGGA GGCTCGAGCA GGAAGTGGAG GAGTGGGAAG AAGAGCAGTC TTGCAAAATG
    CCTCAGATGG ATTCCTCCAC CAGCTCCTCA CCCCAGGCTT TCTCTCCGTC ACCAGAGCCC
    TCGGTGGCCT CTTCTCACGG GGCTCGCTGT TTGTCATCCG AGCATGCTGT GATAGCCAAG
    GAGCAGACGG CCCAGGCCAT TGCTAACACG GCCCAAGCCT ACGAGAAGAG TGGTGTGGAA
    GCAGCCTTGA GTGAGGCATT CCACGAAGAA TACTCCAGGC TCTATCAGCT GGCCAAGGAA
    ACACCCACCT CTCACAGCGA TCCTCGCCTT CAGCATGTCC TGGTCTACTT TTTCCAAAAT
    GAAGCCCCCA AAAGGGTGGT GGAGCGGACC CTTTTGGAGC AGTTTGCAGA TAAAAATCTC
    AGCTATGATG AAAGGTCAAT CCGTATCATG AAGGTGGCTC AGGCTAAACT GAAGGAAATC
    GGTCCGGAGG ACATGAACAT GGAGGAGTAC AAGAAGTGGC ATGAAGATTA CAGTTTGTTT
    CGGAAGGTGT CTGTGTACCT CCTCACAGGC CTGGAACTCT ATCAGAAAGG GAAGTACCAA
    GAGGCGCTGT CGTACCTGGT GTACGCGTAC CAGAGCAACG CCGCCCTGCT GACGAAGGGG
    CCCCTCCGGG GGGTGAAGGA GTCCGTCATT GCCCTGTACC GAAGAAAATG CCTGCTAGAG
    CTGAATGCCG AAGCAGCGTC TCTCTTTGAG ACCAACGATG ACCCCTCTGT CCTGGAGGGC
    ATCAGTGTCA TGAACGAGCT GATCATCCCT TGCATTCACC TAATCATTAA TAATGACATC
    TCCAAGGACG ACCTGGATGC CATCGAGGTC ATGAGAAACC ATTGGTGCTC TTACCTCGGG
    CAAGATATTG CAGAAAATCT GCAGCTGTGC TTAGGGGAAT TTCTCCCAAG GCTTCTGGAT
    CCTTCCGCAG AAATCATTGT CTTGAAGGAG CCTCCGACGA TCCGACCCAA CTCGCCCTAT
    GACCTCTGCA GCCGGTTTGC AGCCGTCATG GAGTCAATGC AGGGGGTGTC GACTGTGACG
    GTGAAGTAA

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