Trim66 cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Trim66 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Trim66 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
ONa136844 XM_029556278.1
Latest version!
Nannospalax galili tripartite motif containing 66 (Trim66), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
ONa35327 XM_008853540.1
Latest version!
Nannospalax galili tripartite motif containing 66 (Trim66), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00

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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 ONa136844
    Clone ID Related Accession (Same CDS sequence) XM_029556278.1
    Accession Version XM_029556278.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4485bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tripartite motif-containing protein 66
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008355789.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili 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## ##RefSeq-Attributes-START## ab initio :: 13% of CDS bases ##RefSeq-Attributes-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
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGACCCGG AAGCACCCGA GAATAAGAAT GCAGTGATCC TGGTGTTTGT GAATCAGTCA 
    GCACCCGATA TTAGGCGCAA ATTGCAGAGC CAGTATACTA TATTAGATTT AAAAGATGCC
    TTCATTAGCC TGCCCTTAGC CAAGGACAGT GAGTCATTCT TTGCCTTTGA ATGGCAAGAT
    CCGGAGGTCG GTTTCAACGG ACAGCTGACC TGGACTCGCC TGCCTCAGGG ATTCAAGAAC
    TTACCCACTC TCTTTGGTGA GGCACTTCAT GAGGATCTGG CACATGTGCA AGGAGCCATC
    TACCAGGAAA GGGGGCTGCT CACAGCCCCC CTTAAAAATA CACAAGAAAT TCTGGACCTG
    TTGGCAGCTC TGTGGCTACC TAAGAAACTG GCTATTAGCC ACTGCCCCGG GCACCAGAAA
    GCCAACACAC CCATAGCTCG GGGAAATCAG AGAGCAGACC GGGTTGCCAA AGAAGTAGCT
    TTGGAGGCCT TCCAGATTTT GCCAATCCAA CTTTTGGGAA AATTGCTGCA GAGCCTTCGA
    GATAAACAGG AACAGGAGGA GTCAACCACG CTCTTTCTTG CAGGAGCATC TCAGACCTGC
    TGGCAGCCAG GGGCAAAATC GGCAGTCAAC CCAGGTGTGT CTTGGATCAA AATCTGTCTA
    ACAGAGCTCA TCTCCTGTCC TGGGTGTCAA CCAGTGTATC TTACCAGAGA TGTAACTGAA
    TATATTCTTC TTCAGTGCTT TTCTTCTGGG CAATCCACAA TGGCCAGGAA TTGCTCAGAG
    TGCAAGGAGA AGAGGGCGGC TCACATCCTC TGCACCTACT GCAACCGCTG GCTGTGCAGT
    TCCTGCACAG AGGAGCACCG GCACGTCCCT GCCCCGGGGG GCCCACTCTT TGCCCGTACT
    CAGAAGGGGT CTTCAGGGGT GAATGGCGGC TCTGGCGACT TTGCCTTGTA CTGCCCTCTG
    CACACACAGG AAGTGCTCAA GCTGTTCTGC GAGACCTGTG ATGTGCTCAC ATGCCACAGC
    TGCCTGATGG TGGAACACAA AGAACACAGG TGCAGACATG TTGAAGAAGT TCTACAAAAC
    CAGAGGATGC TTCTGGAAAG TGTGACAACA CAGGTGGCTC ATAAGAAATC CAGTCTACAG
    ACATCTGCAA AGCAAATCGA GGACAGGATT TTTGAGGTGA AACATCAGCA TAGGAAGGTG
    GAAAACCAGA TCAAAATGGC CAAGATGGTC CTGATGAATG AGCTCAACAA ACAGGCCAAC
    GGACTTATAG AGGAACTTGA GGGCATCACT AATGAGAGAA AGCGGAAACT GGAGCAGCAG
    TTACAGAGCA TCATGGTCCT CAACCGTCAG TTTGAACATG TGCAGAATTT CATCAATTGG
    GCTGTCTGCA GCAAAACCAG TGTCCCTTTC CTTTTCAGCA AAGAGCTGAT TGTGTTTCAG
    ATGCAGCGGT TGCTGGAGAC GAGTTGTAAC ACAGATCCTG GCTCCCCTTG GAGTATCAGA
    TTCACCTGGG AGCCCAACTT CTGGACCAAG CAGCTGGCTT CCCTTGGTTG CATAACTACT
    GAAGGTGGAC AACTGTCCCG GGCAGATACT GCGGCTTATG GAAGCTTACA GGGACCATCA
    TCCTTTTATC AAAGCCACCA GCCCCCCATG GCTCAGCAGG AGGGCCTCAG CCATCCCTCA
    CACAAGTTCC AGCCTCCAGC CCTGTGTTCC TCATCTGTCT GCTGCTCCCA CTGCTCCCCA
    GTGTCACCTT CCCTCAAAGG CCAGGTCCCT CCGCCCAGCA TTCACCCAGC CCACAGTTTC
    CGGCAGCCCT CTGAGATGGT GTCCCACCAG CTGGGGTCGC TGCAGTGCTC CACCCTGCTG
    CCCAGGGAGA AAGAATTGGC TTGCAGTCCT CACCCGCCAA AGTTGCTGCA GCCCTGGCTG
    GAAACGCAGC CCCCTGCGGA GCAGGAGAGC ACATCCCAGC GGCCGGGACA GCAGCTAACT
    TCCCAGCCTG TGTGCATCGT TCCCCCACAG GATGTTCAGC CAGGAGCTCA CACTCAGCCC
    ACCATACAGA CACCCTCCAT CCAAGTTCAG TTCGGCCACC ACCAGAAGCT GAAGCTNNNN
    NNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNNNNNNCAC CCCCACCGCC TCCACCCACC
    CAGCAGCCAC CCCCAGCCCT GCCTCCATCT CAGCACCTGG CTTCTAGTCA GCATGAGAGC
    CCTCCTGGGC CTGCCTGTTC CCAGAACGTG GACATCATGC ACCACAAGTT TGAGCTGGAG
    GAGATGCAGA AGGACCTGGA GCTTCTCCTC CAGGCCCAGC AGCCCAGCCT GCAGCTGAGT
    CAGACCAAAT CTCCTCAGCA TCTTCAGCAA ACCATTGTGG GGCAGATCAA CTACATCGTG
    AGGCAGCCGG CACCTGTCCA GTCCCAGAGC CAGGAGGATA CCCTGCAGGT TACAGAGGAT
    CCACCAGCAT CAGAGGGCCC AAAGCCAACT CTCCCTCTTG ACAGGAATCC GGCTGCTGCC
    TTGCCCCAGA CATCTGAGGA AGAAACACCT CACAGTGTCC CCCCGGTGGA CAACACTTCC
    CAGCACTCCT CTCCAAATGT GGTGAGAAAG CAACATTCCA CTTCAGTCAG CATCATGGGC
    TTTTCTAACA CTGTGGAGAT GGAGTTGTCA TCTACCAGGC TGGCGAGGAC CACAGAACCA
    CAGATCCACA GCGTGAGCAG CCTGACAACT GGCCCTTCCC ACACAGTTCC GAGCCTGCTG
    AATGGCCCTC CACAAACCGT GTCCAGTCTG ACGAGTGTTT CAAACCATGT CATGCCCAAT
    ATGACAGCCA GTCACCTGCA CTCCATGCCA AACCTTGTGC ATGGCACATT CCAGTCCATG
    CCCAACTTGA TGAGTGATTC TTCCCAGGCC ATTGCAAACC AGGCAAGGGA TCACTCGCAG
    GGTGGGCCCA GTCTAATGCC TGCGCGTACC CAAGCTGTGC CGAGTCTGGC CTCTTGTCCT
    CTTCAGGGCA TGCCTCCAGT TTCTGACACG CAGCTCGAGA CTAGATCCAC TTCCAGTCCT
    GGCTCTGGCC GAACTGCAGA GAGCCTGGGC CCCAGGGAGG GGTCTGACCC CTCCCTAGGG
    AATGCCCTAT GTAAGATGGA AAGTGAGGAT TGCACTCGCT TCACGCACTC CATGGGACAA
    GATCTCAAAG GCCCCAGTCT GGATGCTCCC AAGGACTTGG CAATTCCCTC AGAACTGGAG
    GAGCCAATTA ACCTCTCAGT GAAAAAACCT TCACTGCTAC CAGTGATCAA CACATCCACG
    GCTCTGCAGC AGTACCGCAA CCCAAAAGAG TATGAGACTT TTGAACAAGA AACCCTTGAG
    CTGGATACAA AAGAGAATCC GAGCATTAGA GCCTTCAACA GTGAGGCCAA GATTCCCTAT
    GTGCGACTGG AGCGACTCAA GATCTGTGCT GCCTCCTCAG GAGAGATGCC TGTATTCAAG
    CTGAAGCCTC AGAAGAATGA CCAGGATGGG AGCTTCCTGC TGGTGATTGA GTGTGGCACC
    GAGTCCTCCA GCATGTCCAT TAAGGTCAGC CAGAACAGCC TGCCTGATGA CATCCAAGGC
    CCAGGTCTGG GGGGAAGAAA GGTCACTGTC ACATCTCTGG CTGGGCAGCA GTCACCAGAG
    GCAGAAAACA CATCTGAAGA ACACAGACTC ATTCCTCGAA CTCCTGGAGC CAAGAAGTGT
    CCTCCAGCCC CCATAGAGAA TGAGGACTTC TGCGCCGTGT GCCTCAACGG TGGAGAGCTG
    CTGTGCTGTG ACCGGTGCCC CAAAGTATAC CACCTTTCCT GCCACGTGCC AGCCTTGCTC
    AGCTTCCCAG GGGGAGAGTG GGTGTGTACC TTGTGCCGCA GCCTGTTTCA GCCTGAGATG
    GAGTACGACT GTGAGAATGC CCGATACAGT CAGCCTGGAG TGCGGGCACC TCCTGGCCTG
    AGCATGTATG ACCAGAAGAA GTGTGAGAAG CTGGTGCTGT CCCTGTGCTG CAATAGCCTC
    AGCCTGCCCT TCCATGAACC CGTCAGCCCT CTGGCCAGAC ATTATTACCA GATTATCAAG
    AGGCCCATGG ACCTGTCAAT CATCCGGAGA AAGCTTCAAA AGAAAGACCC AGCTCATTAC
    ACCACTCCCG AGGAGGTGGT GTCAGATGTG CGCCTCATGT TCTGGAACTG TGCTAAGTTC
    AACTATCCTG ACTCGGAGGT GGCAGAGGCT GGCCGCTGTC TGGAAGTGTT CTTTGAGGGC
    TGGCTGAAGG AAATCTATCC AGAGAAATGC TTTGCCCAGC CCCAGCAAGA GGATTCAGAT
    TCTGAGGACG TATCTGGCGA GAGTGGCTGT TCCACCCCTC AGGGCTTCCC ATGGCCCCCC
    TACATGCAGG AAGGCATCCA GCCCAAGAGA CGGCGGCGAC AAATGGAGAA TGAAAAGGCA
    AAGAGAATGT CATTTCGCCT GGCCAACAGC ATCTCGCAGG TGTGA

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

    RefSeq XP_029412138.1
    CDS1..4485
    Translation

    Target ORF information:

    RefSeq Version XM_029556278.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili tripartite motif containing 66 (Trim66), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029556278.1

    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
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGGACCCGG AAGCACCCGA GAATAAGAAT GCAGTGATCC TGGTGTTTGT GAATCAGTCA 
    GCACCCGATA TTAGGCGCAA ATTGCAGAGC CAGTATACTA TATTAGATTT AAAAGATGCC
    TTCATTAGCC TGCCCTTAGC CAAGGACAGT GAGTCATTCT TTGCCTTTGA ATGGCAAGAT
    CCGGAGGTCG GTTTCAACGG ACAGCTGACC TGGACTCGCC TGCCTCAGGG ATTCAAGAAC
    TTACCCACTC TCTTTGGTGA GGCACTTCAT GAGGATCTGG CACATGTGCA AGGAGCCATC
    TACCAGGAAA GGGGGCTGCT CACAGCCCCC CTTAAAAATA CACAAGAAAT TCTGGACCTG
    TTGGCAGCTC TGTGGCTACC TAAGAAACTG GCTATTAGCC ACTGCCCCGG GCACCAGAAA
    GCCAACACAC CCATAGCTCG GGGAAATCAG AGAGCAGACC GGGTTGCCAA AGAAGTAGCT
    TTGGAGGCCT TCCAGATTTT GCCAATCCAA CTTTTGGGAA AATTGCTGCA GAGCCTTCGA
    GATAAACAGG AACAGGAGGA GTCAACCACG CTCTTTCTTG CAGGAGCATC TCAGACCTGC
    TGGCAGCCAG GGGCAAAATC GGCAGTCAAC CCAGGTGTGT CTTGGATCAA AATCTGTCTA
    ACAGAGCTCA TCTCCTGTCC TGGGTGTCAA CCAGTGTATC TTACCAGAGA TGTAACTGAA
    TATATTCTTC TTCAGTGCTT TTCTTCTGGG CAATCCACAA TGGCCAGGAA TTGCTCAGAG
    TGCAAGGAGA AGAGGGCGGC TCACATCCTC TGCACCTACT GCAACCGCTG GCTGTGCAGT
    TCCTGCACAG AGGAGCACCG GCACGTCCCT GCCCCGGGGG GCCCACTCTT TGCCCGTACT
    CAGAAGGGGT CTTCAGGGGT GAATGGCGGC TCTGGCGACT TTGCCTTGTA CTGCCCTCTG
    CACACACAGG AAGTGCTCAA GCTGTTCTGC GAGACCTGTG ATGTGCTCAC ATGCCACAGC
    TGCCTGATGG TGGAACACAA AGAACACAGG TGCAGACATG TTGAAGAAGT TCTACAAAAC
    CAGAGGATGC TTCTGGAAAG TGTGACAACA CAGGTGGCTC ATAAGAAATC CAGTCTACAG
    ACATCTGCAA AGCAAATCGA GGACAGGATT TTTGAGGTGA AACATCAGCA TAGGAAGGTG
    GAAAACCAGA TCAAAATGGC CAAGATGGTC CTGATGAATG AGCTCAACAA ACAGGCCAAC
    GGACTTATAG AGGAACTTGA GGGCATCACT AATGAGAGAA AGCGGAAACT GGAGCAGCAG
    TTACAGAGCA TCATGGTCCT CAACCGTCAG TTTGAACATG TGCAGAATTT CATCAATTGG
    GCTGTCTGCA GCAAAACCAG TGTCCCTTTC CTTTTCAGCA AAGAGCTGAT TGTGTTTCAG
    ATGCAGCGGT TGCTGGAGAC GAGTTGTAAC ACAGATCCTG GCTCCCCTTG GAGTATCAGA
    TTCACCTGGG AGCCCAACTT CTGGACCAAG CAGCTGGCTT CCCTTGGTTG CATAACTACT
    GAAGGTGGAC AACTGTCCCG GGCAGATACT GCGGCTTATG GAAGCTTACA GGGACCATCA
    TCCTTTTATC AAAGCCACCA GCCCCCCATG GCTCAGCAGG AGGGCCTCAG CCATCCCTCA
    CACAAGTTCC AGCCTCCAGC CCTGTGTTCC TCATCTGTCT GCTGCTCCCA CTGCTCCCCA
    GTGTCACCTT CCCTCAAAGG CCAGGTCCCT CCGCCCAGCA TTCACCCAGC CCACAGTTTC
    CGGCAGCCCT CTGAGATGGT GTCCCACCAG CTGGGGTCGC TGCAGTGCTC CACCCTGCTG
    CCCAGGGAGA AAGAATTGGC TTGCAGTCCT CACCCGCCAA AGTTGCTGCA GCCCTGGCTG
    GAAACGCAGC CCCCTGCGGA GCAGGAGAGC ACATCCCAGC GGCCGGGACA GCAGCTAACT
    TCCCAGCCTG TGTGCATCGT TCCCCCACAG GATGTTCAGC CAGGAGCTCA CACTCAGCCC
    ACCATACAGA CACCCTCCAT CCAAGTTCAG TTCGGCCACC ACCAGAAGCT GAAGCTNNNN
    NNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNNNNNNCAC CCCCACCGCC TCCACCCACC
    CAGCAGCCAC CCCCAGCCCT GCCTCCATCT CAGCACCTGG CTTCTAGTCA GCATGAGAGC
    CCTCCTGGGC CTGCCTGTTC CCAGAACGTG GACATCATGC ACCACAAGTT TGAGCTGGAG
    GAGATGCAGA AGGACCTGGA GCTTCTCCTC CAGGCCCAGC AGCCCAGCCT GCAGCTGAGT
    CAGACCAAAT CTCCTCAGCA TCTTCAGCAA ACCATTGTGG GGCAGATCAA CTACATCGTG
    AGGCAGCCGG CACCTGTCCA GTCCCAGAGC CAGGAGGATA CCCTGCAGGT TACAGAGGAT
    CCACCAGCAT CAGAGGGCCC AAAGCCAACT CTCCCTCTTG ACAGGAATCC GGCTGCTGCC
    TTGCCCCAGA CATCTGAGGA AGAAACACCT CACAGTGTCC CCCCGGTGGA CAACACTTCC
    CAGCACTCCT CTCCAAATGT GGTGAGAAAG CAACATTCCA CTTCAGTCAG CATCATGGGC
    TTTTCTAACA CTGTGGAGAT GGAGTTGTCA TCTACCAGGC TGGCGAGGAC CACAGAACCA
    CAGATCCACA GCGTGAGCAG CCTGACAACT GGCCCTTCCC ACACAGTTCC GAGCCTGCTG
    AATGGCCCTC CACAAACCGT GTCCAGTCTG ACGAGTGTTT CAAACCATGT CATGCCCAAT
    ATGACAGCCA GTCACCTGCA CTCCATGCCA AACCTTGTGC ATGGCACATT CCAGTCCATG
    CCCAACTTGA TGAGTGATTC TTCCCAGGCC ATTGCAAACC AGGCAAGGGA TCACTCGCAG
    GGTGGGCCCA GTCTAATGCC TGCGCGTACC CAAGCTGTGC CGAGTCTGGC CTCTTGTCCT
    CTTCAGGGCA TGCCTCCAGT TTCTGACACG CAGCTCGAGA CTAGATCCAC TTCCAGTCCT
    GGCTCTGGCC GAACTGCAGA GAGCCTGGGC CCCAGGGAGG GGTCTGACCC CTCCCTAGGG
    AATGCCCTAT GTAAGATGGA AAGTGAGGAT TGCACTCGCT TCACGCACTC CATGGGACAA
    GATCTCAAAG GCCCCAGTCT GGATGCTCCC AAGGACTTGG CAATTCCCTC AGAACTGGAG
    GAGCCAATTA ACCTCTCAGT GAAAAAACCT TCACTGCTAC CAGTGATCAA CACATCCACG
    GCTCTGCAGC AGTACCGCAA CCCAAAAGAG TATGAGACTT TTGAACAAGA AACCCTTGAG
    CTGGATACAA AAGAGAATCC GAGCATTAGA GCCTTCAACA GTGAGGCCAA GATTCCCTAT
    GTGCGACTGG AGCGACTCAA GATCTGTGCT GCCTCCTCAG GAGAGATGCC TGTATTCAAG
    CTGAAGCCTC AGAAGAATGA CCAGGATGGG AGCTTCCTGC TGGTGATTGA GTGTGGCACC
    GAGTCCTCCA GCATGTCCAT TAAGGTCAGC CAGAACAGCC TGCCTGATGA CATCCAAGGC
    CCAGGTCTGG GGGGAAGAAA GGTCACTGTC ACATCTCTGG CTGGGCAGCA GTCACCAGAG
    GCAGAAAACA CATCTGAAGA ACACAGACTC ATTCCTCGAA CTCCTGGAGC CAAGAAGTGT
    CCTCCAGCCC CCATAGAGAA TGAGGACTTC TGCGCCGTGT GCCTCAACGG TGGAGAGCTG
    CTGTGCTGTG ACCGGTGCCC CAAAGTATAC CACCTTTCCT GCCACGTGCC AGCCTTGCTC
    AGCTTCCCAG GGGGAGAGTG GGTGTGTACC TTGTGCCGCA GCCTGTTTCA GCCTGAGATG
    GAGTACGACT GTGAGAATGC CCGATACAGT CAGCCTGGAG TGCGGGCACC TCCTGGCCTG
    AGCATGTATG ACCAGAAGAA GTGTGAGAAG CTGGTGCTGT CCCTGTGCTG CAATAGCCTC
    AGCCTGCCCT TCCATGAACC CGTCAGCCCT CTGGCCAGAC ATTATTACCA GATTATCAAG
    AGGCCCATGG ACCTGTCAAT CATCCGGAGA AAGCTTCAAA AGAAAGACCC AGCTCATTAC
    ACCACTCCCG AGGAGGTGGT GTCAGATGTG CGCCTCATGT TCTGGAACTG TGCTAAGTTC
    AACTATCCTG ACTCGGAGGT GGCAGAGGCT GGCCGCTGTC TGGAAGTGTT CTTTGAGGGC
    TGGCTGAAGG AAATCTATCC AGAGAAATGC TTTGCCCAGC CCCAGCAAGA GGATTCAGAT
    TCTGAGGACG TATCTGGCGA GAGTGGCTGT TCCACCCCTC AGGGCTTCCC ATGGCCCCCC
    TACATGCAGG AAGGCATCCA GCCCAAGAGA CGGCGGCGAC AAATGGAGAA TGAAAAGGCA
    AAGAGAATGT CATTTCGCCT GGCCAACAGC ATCTCGCAGG TGTGA

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

    CloneID ONa35327
    Clone ID Related Accession (Same CDS sequence) XM_008853540.1
    Accession Version XM_008853540.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3840bp)
    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 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tripartite motif-containing protein 66
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008355789.1) 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 :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases ##RefSeq-Attributes-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
    3541
    3601
    3661
    3721
    3781
    ATGCAGATCA CTGGCACAGA GCTCATCTCC TGTCCTGGGT GTCAACCAGT GTATCTTACC 
    AGAGATGTAA CTGAATATAT TCTTCTTCAG TGCTTTTCTT CTGGGCAATC CACAATGGCC
    AGGAATTGCT CAGAGTGCAA GGAGAAGAGG GCGGCTCACA TCCTCTGCAC CTACTGCAAC
    CGCTGGCTGT GCAGTTCCTG CACAGAGGAG CACCGGCACG TCCCTGCCCC GGGGGGCCCA
    CTCTTTGCCC GTACTCAGAA GGGGTCTTCA GGGGTGAATG GCGGCTCTGG CGACTTTGCC
    TTGTACTGCC CTCTGCACAC ACAGGAAGTG CTCAAGCTGT TCTGCGAGAC CTGTGATGTG
    CTCACATGCC ACAGCTGCCT GATGGTGGAA CACAAAGAAC ACAGGTGCAG ACATGTTGAA
    GAAGTTCTAC AAAACCAGAG GATGCTTCTG GAAAGTGTGA CAACACAGGT GGCTCATAAG
    AAATCCAGTC TACAGACATC TGCAAAGCAA ATCGAGGACA GGATTTTTGA GGTGAAACAT
    CAGCATAGGA AGGTGGAAAA CCAGATCAAA ATGGCCAAGA TGGTCCTGAT GAATGAGCTC
    AACAAACAGG CCAACGGACT TATAGAGGAA CTTGAGGGCA TCACTAATGA GAGAAAGCGG
    AAACTGGAGC AGCAGTTACA GAGCATCATG GTCCTCAACC GTCAGTTTGA ACATGTGCAG
    AATTTCATCA ATTGGGCTGT CTGCAGCAAA ACCAGTGTCC CTTTCCTTTT CAGCAAAGAG
    CTGATTGTGT TTCAGATGCA GCGGTTGCTG GAGACGAGTT GTAACACAGA TCCTGGCTCC
    CCTTGGAGTA TCAGATTCAC CTGGGAGCCC AACTTCTGGA CCAAGCAGCT GGCTTCCCTT
    GGTTGCATAA CTACTGAAGG TGGACAACTG TCCCGGGCAG ATACTGCGGC TTATGGAAGC
    TTACAGGGAC CATCATCCTT TTATCAAAGC CACCAGCCCC CCATGGCTCA GCAGGAGGGC
    CTCAGCCATC CCTCACACAA GTTCCAGCCT CCAGCCCTGT GTTCCTCATC TGTCTGCTGC
    TCCCACTGCT CCCCAGTGTC ACCTTCCCTC AAAGGCCAGG TCCCTCCGCC CAGCATTCAC
    CCAGCCCACA GTTTCCGGCA GCCCTCTGAG ATGGTGTCCC ACCAGCTGGG GTCGCTGCAG
    TGCTCCACCC TGCTGCCCAG GGAGAAAGAA TTGGCTTGCA GTCCTCACCC GCCAAAGTTG
    CTGCAGCCCT GGCTGGAAAC GCAGCCCCCT GCGGAGCAGG AGAGCACATC CCAGCGGCCG
    GGACAGCAGC TAACTTCCCA GCCTGTGTGC ATCGTTCCCC CACAGGATGT TCAGCCAGGA
    GCTCACACTC AGCCCACCAT ACAGACACCC TCCATCCAAG TTCAGTTCGG CCACCACCAG
    AAGCTGAAGC TNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNCACCCCCA
    CCGCCTCCAC CCACCCAGCA GCCACCCCCA GCCCTGCCTC CATCTCAGCA CCTGGCTTCT
    AGTCAGCATG AGAGCCCTCC TGGGCCTGCC TGTTCCCAGA ACGTGGACAT CATGCACCAC
    AAGTTTGAGC TGGAGGAGAT GCAGAAGGAC CTGGAGCTTC TCCTCCAGGC CCAGCAGCCC
    AGCCTGCAGC TGAGTCAGAC CAAATCTCCT CAGCATCTTC AGCAAACCAT TGTGGGGCAG
    ATCAACTACA TCGTGAGGCA GCCGGCACCT GTCCAGTCCC AGAGCCAGGA GGATACCCTG
    CAGGTTACAG AGGATCCACC AGCATCAGAG GGCCCAAAGC CAACTCTCCC TCTTGACAGG
    AATCCGGCTG CTGCCTTGCC CCAGACATCT GAGGAAGAAA CACCTCACAG TGTCCCCCCG
    GTGGACAACA CTTCCCAGCA CTCCTCTCCA AATGTGGTGA GAAAGCAACA TTCCACTTCA
    GTCAGCATCA TGGGCTTTTC TAACACTGTG GAGATGGAGT TGTCATCTAC CAGGCTGGCG
    AGGACCACAG AACCACAGAT CCACAGCGTG AGCAGCCTGA CAACTGGCCC TTCCCACACA
    GTTCCGAGCC TGCTGAATGG CCCTCCACAA ACCGTGTCCA GTCTGACGAG TGTTTCAAAC
    CATGTCATGC CCAATATGAC AGCCAGTCAC CTGCACTCCA TGCCAAACCT TGTGCATGGC
    ACATTCCAGT CCATGCCCAA CTTGATGAGT GATTCTTCCC AGGCCATTGC AAACCAGGCA
    AGGGATCACT CGCAGGGTGG GCCCAGTCTA ATGCCTGCGC GTACCCAAGC TGTGCCGAGT
    CTGGCCTCTT GTCCTCTTCA GGGCATGCCT CCAGTTTCTG ACACGCAGCT CGAGACTAGA
    TCCACTTCCA GTCCTGGCTC TGGCCGAACT GCAGAGAGCC TGGGCCCCAG GGAGGGGTCT
    GACCCCTCCC TAGGGAATGC CCTATGTAAG ATGGAAAGTG AGGATTGCAC TCGCTTCACG
    CACTCCATGG GACAAGATCT CAAAGGCCCC AGTCTGGATG CTCCCAAGGA CTTGGCAATT
    CCCTCAGAAC TGGAGGAGCC AATTAACCTC TCAGTGAAAA AACCTTCACT GCTACCAGTG
    ATCAACACAT CCACGGCTCT GCAGCAGTAC CGCAACCCAA AAGAGTATGA GACTTTTGAA
    CAAGAAACCC TTGAGCTGGA TACAAAAGAG AATCCGAGCA TTAGAGCCTT CAACAGTGAG
    GCCAAGATTC CCTATGTGCG ACTGGAGCGA CTCAAGATCT GTGCTGCCTC CTCAGGAGAG
    ATGCCTGTAT TCAAGCTGAA GCCTCAGAAG AATGACCAGG ATGGGAGCTT CCTGCTGGTG
    ATTGAGTGTG GCACCGAGTC CTCCAGCATG TCCATTAAGG TCAGCCAGAA CAGCCTGCCT
    GATGACATCC AAGGCCCAGG TCTGGGGGGA AGAAAGGTCA CTGTCACATC TCTGGCTGGG
    CAGCAGTCAC CAGAGGCAGA AAACACATCT GAAGAACACA GACTCATTCC TCGAACTCCT
    GGAGCCAAGA AGTGTCCTCC AGCCCCCATA GAGAATGAGG ACTTCTGCGC CGTGTGCCTC
    AACGGTGGAG AGCTGCTGTG CTGTGACCGG TGCCCCAAAG TATACCACCT TTCCTGCCAC
    GTGCCAGCCT TGCTCAGCTT CCCAGGGGGA GAGTGGGTGT GTACCTTGTG CCGCAGCCTG
    TTTCAGCCTG AGATGGAGTA CGACTGTGAG AATGCCCGAT ACAGTCAGCC TGGAGTGCGG
    GCACCTCCTG GCCTGAGCAT GTATGACCAG AAGAAGTGTG AGAAGCTGGT GCTGTCCCTG
    TGCTGCAATA GCCTCAGCCT GCCCTTCCAT GAACCCGTCA GCCCTCTGGC CAGACATTAT
    TACCAGATTA TCAAGAGGCC CATGGACCTG TCAATCATCC GGAGAAAGCT TCAAAAGAAA
    GACCCAGCTC ATTACACCAC TCCCGAGGAG GTGGTGTCAG ATGTGCGCCT CATGTTCTGG
    AACTGTGCTA AGTTCAACTA TCCTGACTCG GAGGTGGCAG AGGCTGGCCG CTGTCTGGAA
    GTGTTCTTTG AGGGCTGGCT GAAGGAAATC TATCCAGAGA AATGCTTTGC CCAGCCCCAG
    CAAGAGGATT CAGATTCTGA GGACGTATCT GGCGAGAGTG GCTGTTCCAC CCCTCAGGGC
    TTCCCATGGC CCCCCTACAT GCAGGAAGGC ATCCAGCCCA AGAGACGGCG GCGACAAATG
    GAGAATGAAA AGGCAAAGAG AATGTCATTT CGCCTGGCCA ACAGCATCTC GCAGGTGTGA

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

    RefSeq XP_008851762.1
    CDS1..3840
    Translation

    Target ORF information:

    RefSeq Version XM_008853540.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili tripartite motif containing 66 (Trim66), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008853540.1

    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
    3541
    3601
    3661
    3721
    3781
    ATGCAGATCA CTGGCACAGA GCTCATCTCC TGTCCTGGGT GTCAACCAGT GTATCTTACC 
    AGAGATGTAA CTGAATATAT TCTTCTTCAG TGCTTTTCTT CTGGGCAATC CACAATGGCC
    AGGAATTGCT CAGAGTGCAA GGAGAAGAGG GCGGCTCACA TCCTCTGCAC CTACTGCAAC
    CGCTGGCTGT GCAGTTCCTG CACAGAGGAG CACCGGCACG TCCCTGCCCC GGGGGGCCCA
    CTCTTTGCCC GTACTCAGAA GGGGTCTTCA GGGGTGAATG GCGGCTCTGG CGACTTTGCC
    TTGTACTGCC CTCTGCACAC ACAGGAAGTG CTCAAGCTGT TCTGCGAGAC CTGTGATGTG
    CTCACATGCC ACAGCTGCCT GATGGTGGAA CACAAAGAAC ACAGGTGCAG ACATGTTGAA
    GAAGTTCTAC AAAACCAGAG GATGCTTCTG GAAAGTGTGA CAACACAGGT GGCTCATAAG
    AAATCCAGTC TACAGACATC TGCAAAGCAA ATCGAGGACA GGATTTTTGA GGTGAAACAT
    CAGCATAGGA AGGTGGAAAA CCAGATCAAA ATGGCCAAGA TGGTCCTGAT GAATGAGCTC
    AACAAACAGG CCAACGGACT TATAGAGGAA CTTGAGGGCA TCACTAATGA GAGAAAGCGG
    AAACTGGAGC AGCAGTTACA GAGCATCATG GTCCTCAACC GTCAGTTTGA ACATGTGCAG
    AATTTCATCA ATTGGGCTGT CTGCAGCAAA ACCAGTGTCC CTTTCCTTTT CAGCAAAGAG
    CTGATTGTGT TTCAGATGCA GCGGTTGCTG GAGACGAGTT GTAACACAGA TCCTGGCTCC
    CCTTGGAGTA TCAGATTCAC CTGGGAGCCC AACTTCTGGA CCAAGCAGCT GGCTTCCCTT
    GGTTGCATAA CTACTGAAGG TGGACAACTG TCCCGGGCAG ATACTGCGGC TTATGGAAGC
    TTACAGGGAC CATCATCCTT TTATCAAAGC CACCAGCCCC CCATGGCTCA GCAGGAGGGC
    CTCAGCCATC CCTCACACAA GTTCCAGCCT CCAGCCCTGT GTTCCTCATC TGTCTGCTGC
    TCCCACTGCT CCCCAGTGTC ACCTTCCCTC AAAGGCCAGG TCCCTCCGCC CAGCATTCAC
    CCAGCCCACA GTTTCCGGCA GCCCTCTGAG ATGGTGTCCC ACCAGCTGGG GTCGCTGCAG
    TGCTCCACCC TGCTGCCCAG GGAGAAAGAA TTGGCTTGCA GTCCTCACCC GCCAAAGTTG
    CTGCAGCCCT GGCTGGAAAC GCAGCCCCCT GCGGAGCAGG AGAGCACATC CCAGCGGCCG
    GGACAGCAGC TAACTTCCCA GCCTGTGTGC ATCGTTCCCC CACAGGATGT TCAGCCAGGA
    GCTCACACTC AGCCCACCAT ACAGACACCC TCCATCCAAG TTCAGTTCGG CCACCACCAG
    AAGCTGAAGC TNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNNNNNNNNN NNCACCCCCA
    CCGCCTCCAC CCACCCAGCA GCCACCCCCA GCCCTGCCTC CATCTCAGCA CCTGGCTTCT
    AGTCAGCATG AGAGCCCTCC TGGGCCTGCC TGTTCCCAGA ACGTGGACAT CATGCACCAC
    AAGTTTGAGC TGGAGGAGAT GCAGAAGGAC CTGGAGCTTC TCCTCCAGGC CCAGCAGCCC
    AGCCTGCAGC TGAGTCAGAC CAAATCTCCT CAGCATCTTC AGCAAACCAT TGTGGGGCAG
    ATCAACTACA TCGTGAGGCA GCCGGCACCT GTCCAGTCCC AGAGCCAGGA GGATACCCTG
    CAGGTTACAG AGGATCCACC AGCATCAGAG GGCCCAAAGC CAACTCTCCC TCTTGACAGG
    AATCCGGCTG CTGCCTTGCC CCAGACATCT GAGGAAGAAA CACCTCACAG TGTCCCCCCG
    GTGGACAACA CTTCCCAGCA CTCCTCTCCA AATGTGGTGA GAAAGCAACA TTCCACTTCA
    GTCAGCATCA TGGGCTTTTC TAACACTGTG GAGATGGAGT TGTCATCTAC CAGGCTGGCG
    AGGACCACAG AACCACAGAT CCACAGCGTG AGCAGCCTGA CAACTGGCCC TTCCCACACA
    GTTCCGAGCC TGCTGAATGG CCCTCCACAA ACCGTGTCCA GTCTGACGAG TGTTTCAAAC
    CATGTCATGC CCAATATGAC AGCCAGTCAC CTGCACTCCA TGCCAAACCT TGTGCATGGC
    ACATTCCAGT CCATGCCCAA CTTGATGAGT GATTCTTCCC AGGCCATTGC AAACCAGGCA
    AGGGATCACT CGCAGGGTGG GCCCAGTCTA ATGCCTGCGC GTACCCAAGC TGTGCCGAGT
    CTGGCCTCTT GTCCTCTTCA GGGCATGCCT CCAGTTTCTG ACACGCAGCT CGAGACTAGA
    TCCACTTCCA GTCCTGGCTC TGGCCGAACT GCAGAGAGCC TGGGCCCCAG GGAGGGGTCT
    GACCCCTCCC TAGGGAATGC CCTATGTAAG ATGGAAAGTG AGGATTGCAC TCGCTTCACG
    CACTCCATGG GACAAGATCT CAAAGGCCCC AGTCTGGATG CTCCCAAGGA CTTGGCAATT
    CCCTCAGAAC TGGAGGAGCC AATTAACCTC TCAGTGAAAA AACCTTCACT GCTACCAGTG
    ATCAACACAT CCACGGCTCT GCAGCAGTAC CGCAACCCAA AAGAGTATGA GACTTTTGAA
    CAAGAAACCC TTGAGCTGGA TACAAAAGAG AATCCGAGCA TTAGAGCCTT CAACAGTGAG
    GCCAAGATTC CCTATGTGCG ACTGGAGCGA CTCAAGATCT GTGCTGCCTC CTCAGGAGAG
    ATGCCTGTAT TCAAGCTGAA GCCTCAGAAG AATGACCAGG ATGGGAGCTT CCTGCTGGTG
    ATTGAGTGTG GCACCGAGTC CTCCAGCATG TCCATTAAGG TCAGCCAGAA CAGCCTGCCT
    GATGACATCC AAGGCCCAGG TCTGGGGGGA AGAAAGGTCA CTGTCACATC TCTGGCTGGG
    CAGCAGTCAC CAGAGGCAGA AAACACATCT GAAGAACACA GACTCATTCC TCGAACTCCT
    GGAGCCAAGA AGTGTCCTCC AGCCCCCATA GAGAATGAGG ACTTCTGCGC CGTGTGCCTC
    AACGGTGGAG AGCTGCTGTG CTGTGACCGG TGCCCCAAAG TATACCACCT TTCCTGCCAC
    GTGCCAGCCT TGCTCAGCTT CCCAGGGGGA GAGTGGGTGT GTACCTTGTG CCGCAGCCTG
    TTTCAGCCTG AGATGGAGTA CGACTGTGAG AATGCCCGAT ACAGTCAGCC TGGAGTGCGG
    GCACCTCCTG GCCTGAGCAT GTATGACCAG AAGAAGTGTG AGAAGCTGGT GCTGTCCCTG
    TGCTGCAATA GCCTCAGCCT GCCCTTCCAT GAACCCGTCA GCCCTCTGGC CAGACATTAT
    TACCAGATTA TCAAGAGGCC CATGGACCTG TCAATCATCC GGAGAAAGCT TCAAAAGAAA
    GACCCAGCTC ATTACACCAC TCCCGAGGAG GTGGTGTCAG ATGTGCGCCT CATGTTCTGG
    AACTGTGCTA AGTTCAACTA TCCTGACTCG GAGGTGGCAG AGGCTGGCCG CTGTCTGGAA
    GTGTTCTTTG AGGGCTGGCT GAAGGAAATC TATCCAGAGA AATGCTTTGC CCAGCCCCAG
    CAAGAGGATT CAGATTCTGA GGACGTATCT GGCGAGAGTG GCTGTTCCAC CCCTCAGGGC
    TTCCCATGGC CCCCCTACAT GCAGGAAGGC ATCCAGCCCA AGAGACGGCG GCGACAAATG
    GAGAATGAAA AGGCAAAGAG AATGTCATTT CGCCTGGCCA ACAGCATCTC GCAGGTGTGA

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