CSMD3 (NM_198123) Human Untagged Clone
CAT#: SC309363
CSMD3 (untagged)-Human CUB and Sushi multiple domains 3 (CSMD3), transcript variant a
"NM_198123" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | CSMD3 |
Synonyms | KIAA1894 |
Vector | pCMV6 series |
Sequence Data |
>NCBI ORF sequence for NM_198123, the custom clone sequence may differ by one or more nucleotides
ATGAAAGGGATCCGCAAAGGGGAAAGCCGAGCAAAGGAATCCAAACCCTGGGAGCCTGGC AAGCGAAGATGCGCTAAATGTGGCCGCCTAGACTTCATCCTGATGAAGAAAATGGGGATT AAAAGTGGATTTACGTTTTGGAACCTCGTCTTTTTATTGACGGTGTCTTGTGTGAAAGGA TTTATTTATACATGTGGTGGAACTTTAAAAGGACTTAATGGCACTATAGAAAGCCCTGGT TTTCCATATGGATATCCAAATGGTGCAAACTGCACATGGGTAATAATAGCAGAAGAACGA AATAGAATACAAATTGTTTTTCAGTCATTTGCTCTAGAAGAAGAATACGACTACTTATCA TTATATGATGGACATCCTCATCCTACAAACTTTAGGACAAGGTTAACAGGATTCCATCTG CCACCTCCAGTGACAAGTACCAAATCTGTGTTCTCACTACGTTTGACCAGTGATTTTGCA GTTAGTGCTCATGGATTTAAGGTATATTACGAAGAATTGCAGAGTAGCTCTTGTGGAAAT CCTGGTGTTCCACCCAAAGGTGTATTATATGGCACAAGATTCGACGTCGGGGACAAGATC CGCTACAGCTGTGTAACTGGATACATCCTTGATGGCCACCCTCAGCTCACCTGCATAGCC AATTCAGTTAATACAGCTTCGTGGGATTTTCCTGTTCCTATCTGTAGAGCTGAAGATGCT TGTGGAGGAACAATGAGAGGATCCAGTGGCATCATATCCAGCCCTAGTTTTCCTAATGAG TACCATAACAATGCTGATTGCACTTGGACCATTGTAGCAGAGCCTGGGGACACAATTTCA CTCATATTTACTGATTTTCAAATGGAAGAGAAATATGATTACTTAGAAATAGAAGGTTCT GAGCCACCTACCATATGGTTATCTGGAATGAATATACCACCACCAATTATCAGCAACAAA AACTGGCTCAGACTGCATTTTGTTACAGACAGCAATCATCGATACCGTGGATTTAGTGCT CCCTATCAAGGTTCTTCTACATTGACCCACACTACCTCCACTGGTGAGTTAGAGGAGCAT AACAGGACTACCACTGGTGCTATTGCTGTTGCTAGCACACCTGCAGATGTTACTGTATCC AGTGTTACAGCTGTCACCATCCATAGACTTTCCGAGGAACAGCGAGTGCAAGTTACGAGT CTCAGAAATTCAGGTCTGGACCCCAACACGTCCAAGGACGGGCTCTCTCCTCATCCAGCA GATACACAAAGTACCAGGAGAAGACCAAGACATGCTGAACAGATAGAAAGAACTAAAGAG CTTGCAGTTGTTACTCATAGAGTGAAAAAGGCCATAGATTTTAAATCTAGAGGATTTAAA TTGTTTCCAGGGAAAGACAACAGCAACAAGTTTTCTATCTTAAATGAGGGAGGTATTAAA ACAGCTTCCAATTTATGCCCAGATCCAGGAGAACCAGAAAATGGGAAGAGAATCGGATCA GATTTTAGCCTTGGATCAACTGTGCAGTTCTCTTGTGATGAAGATTATGTCCTACAGGGC GCAAAGAGCATCACCTGTCAACGGATAGCTGAAGTTTTTGCTGCTTGGAGTGATCACAGG CCTGTGTGTAAAGTGAAAACGTGTGGCTCTAATCTTCAAGGACCAAGTGGTACCTTTACA TCTCCCAACTTTCCGTTCCAGTATGACAGCAATGCACAATGTGTCTGGGTCATCACAGCA GTGAATACAAATAAGGTTATCCAGATAAATTTTGAAGAATTTGATCTGGAGATTGGCTAT GATACCTTGACAATTGGCGATGGGGGCGAAGTTGGAGATCCTAGGACAGTGCTCCAAGTG CTGACTGGAAGCTTTGTACCAGACTTGATAGTGAGCATGAGTAGCCAAATGTGGCTGCAC CTTCAAACGGACGAAAGTGTTGGATCTGTTGGTTTCAAGGTTAACTACAAAGAAATTGAG AAAGAAAGTTGTGGTGATCCTGGTACACCCTTATATGGAATTAGAGAAGGCGATGGATTT TCTAATCGTGATGTTTTAAGGTTTGAATGCCAGTTTGGGTTTGAATTAATTGGAGAGAAA TCCATTGTTTGTCAAGAGAATAACCAATGGTCTGCAAACATACCCATCTGTATCTTTCCC TGCCTGTCTAACTTTACTGCACCAATGGGAACAGTTCTTTCTCCTGATTACCCAGAAGGG TATGGAAATAATTTAAATTGCATCTGGACGATAATCTCTGATCCAGGGAGCCGGATACAT CTTTCTTTCAATGACTTTGACCTGGAATCCCAGTTTGATTTCCTTGCTGTTAAAGATGGT GACTCTCCAGAATCCCCAATTCTTGGAACCTTTACTGGGGCTGAGGTGCCTTCCCATCTT ACTAGTAATAGTCACATACTGCGATTGGAATTTCAGGCTGACCACTCAATGTCAGGACGT GGCTTTAACATCACTTACAACACATTTGGACATAATGAATGCCCTGATCCTGGAATACCA ATCAATGCACGGCGGTTTGGGGACAACTTTCAATTAGGAAGTTCAATTTCAGTTATTTGT GAAGAAGGATTTATTAAAACCCAGGGAACAGAAACAATTACATGTATTCTTATGGATGGA AAAGTAATGTGGAGTGGACTGATTCCAAAATGTGGAGCCCCATGTGGTGGCCATTTTTCA GCTCCCAGTGGAGTGATTCTCTCACCAGGATGGCCAGGATACTACAAAGACTCTTTGAAT TGTGAGTGGGTGATTGAAGCTGAACCTGGACACTCTATCAAAATTACATTTGAAAGATTT CAGACTGAACTGAATTATGATGTTCTGGAAGTTCATGATGGGCCAAATCTTCTGTCACCC TTGCTTGGATCTTACAATGGCACCCAAGTGCCCCAGTTTCTATTTAGTAGCAGTAATTTT ATATACCTTCTATTTACAACAGACAACAGTCGTTCCAATAATGGTTTCAAGATTCATTAT GAAAGTGTTACAGTGAACACGTATTCTTGTTTGGACCCTGGCATACCTGTACATGGCCGT CGCTATGGTCATGATTTCTCCATTGGCTCTACTGTTTCATTTAGTTGTGATTCAGGATAC AGGTTGAGTCATGAAGAGCCCCTTCTATGCGAAAAAAACCACTGGTGGAGTCATCCACTT CCAACCTGTGATGCATTATGTGGAGGAGATGTTAGAGGGCCTAGTGGAACAATCTTATCA CCTGGTTACCCGGAATTTTATCCAAATTCTCTGAATTGTACATGGACTGTTGATGTAACC CATGGAAAAGGTGTGCAGTTCAACTTCCACACTTTTCATTTGGAAGACCATCATGACTAC TTACTGATCACAGAGAATGGCAGTTTTACCCAACCACTGGCACGCCTGACTGGTTCAGAT CTTCCTCCAACAATCAATGCTGGTCTCTATGGAAATTTCAGGGCTCAATTGCGTTTCATT TCAGATTTTTCAATATCATATGAAGGATTTAACATAACATTCTCTGAATATAACCTTGAA CCTTGTGAAGATCCTGGCATTCCTCAATATGGTAGTCGAATCGGGTTCAACTTTGGGATT GGTGACACTCTGACCTTCTCATGCTCTTCGGGTTATCGACTGGAAGGAACATCAGAGATC ATCTGTCTTGGTGGTGGCCGACGAGTGTGGAGTGCACCTCTGCCAAGGTGTGTGGCTGAA TGTGGTGCATCTGCAACGAATAATGAAGGAATTTTGCTGTCTCCAAATTATCCACTCAAC TATGAAAACAACCATGAATGCATTTATAGTATTCAGGTTCAAGCAGGAAAGGGAATCAAT ATTTCAGCCAGAACATTTCATTTAGCACAAGGAGATGTTCTTAAGATTTATGATGGAAAA GATAAAACGACTCATCTACTAGGTGCTTTTACTGGTGCATCTATGCGCGGACTGACACTT AGTAGTACTTCAAATCAACTCTGGCTAGAATTTAATTCCGATACTGAAGGGACAGATGAA GGCTTTCAACTTGTGTATACCAGTTTTGAACTCTCACACTGTGAAGATCCTGGCATTCCA CAATTTGGATACAAGATCAGTGACCAAGGCCACTTTGCTGGTAGCACCATCATTTATGGA TGCAATCCAGGCTACACTCTCCACGGAAGTAGCCTTCTCAAGTGCATGACAGGGGAGAGA AGGGCATGGGACTATCCTCTGCCTTCCTGTATTGCTGAATGTGGAGGTCGTTTTAAAGGA GAATCATCAGGAAGAATCTTATCTCCTGGCTATCCTTTTCCATATGACAATAACCTGCGT TGCATGTGGATGATTGAGGTAGATCCTGGAAATATTGTCAGCTTGCAGTTTCTTGCTTTT GATACGGAAGCATCACATGATATACTCCGAGTCTGGGACGGTCCACCAGAAAATGATATG CTTTTAAAGGAAATTAGTGGATCTCTTATTCCTGAAGGAATTCATAGCACCCTCAATATA GTAACCATCCAGTTTGACACGGATTTTTATATTAGCAAATCTGGATTTGCAATTCAGTTT TCAAGTTCTGTTGCCACTGCGTGTCGTGACCCAGGGGTCCCCATGAATGGGACTCGAAAT GGGGATGGAAGAGAACCTGGGGACACTGTTGTTTTTCAATGTGACCCAGGATATGAACTT CAAGGAGAGGAAAGAATAACCTGCATTCAGGTAGAAAATCGGTACTTCTGGCAGCCCAGC CCACCAGTCTGTATAGCACCCTGTGGAGGCAATTTAACAGGATCTTCAGGCTTTATTCTT TCACCAAACTTCCCTCATCCATATCCGCATAGCAGAGACTGTGACTGGACTATCACCGTC AATGCAGACTATGTTATCTCCTTGGCGTTCATCAGTTTTAGCATAGAACCAAACTATGAC TTCCTCTATATCTATGATGGACCAGACAGTAATAGCCCACTGATTGGAAGTTTTCAAGAC AGCAAGTTACCAGAGAGAATAGAAAGCAGCTCAAATACAATGCATTTGGCTTTTCGGAGT GATGGATCTGTTAGTTACACTGGATTTCATCTAGAATACAAAGCAAAACTGCGAGAGTCC TGCTTTGATCCAGGCAATATAATGAATGGCACCAGACTTGGAATGGATTATAAATTAGGG TCAACAGTCACCTATTACTGTGATGCTGGTTATGTTCTTCAAGGTTATTCAACACTCACC TGTATCATGGGAGATGATGGAAGACCTGGATGGAATAGAGCCTTGCCAAGTTGTCATGCG CCCTGTGGAAGTCGTTCAACAGGTTCAGAAGGCACTGTTCTATCACCAAACTATCCAAAA AATTACAGTGTGGGACATAATTGTGTTTATTCTATAGCAGTTCCAAAGGAGTTTGTGGTG TTTGGCCAGTTTGTATTTTTCCAGACATCACTCCACGATGTTGTTGAGGTGTATGATGGG CCAACTCAGCAATCTTCTCTGTTATCTTCCCTCTCAGGATCCCATTCAGGAGAATCACTT CCACTGAGTTCAGGTAATCAGATCACAATTCGATTTACTTCAGTTGGACCAATAACAGCT AAGGGATTTCACTTTGTTTACCAAGCTGTTCCTAGAACAAGTTCTACACAATGCAGTTCT GTGCCTGAACCAAGATTCGGAAGAAGAATTGGCAATGAATTTGCAGTCGGTTCATCGGTT CTTTTTGATTGTAATCCAGGATATATTCTCCATGGATCCATAGCAATTAGGTGTGAAACA GTGCCCAATTCTTTGGCCCAGTGGAATGATTCCTTACCTACTTGTATTGTGCCCTGTGGT GGAATTTTAACTAAGCGCAAAGGGACTATTTTGTCACCTGGATACCCTGAGCCTTATGAC AACAATCTGAATTGTGTGTGGAAGATCACAGTGCCAGAGGGAGCTGGCATTCAAGTGCAA GTTGTTAGCTTTGCTACAGAACATAATTGGGATTCTCTGGACTTTTATGATGGGGGAGAC AACAATGCTCCAAGACTTGGAAGCTATTCAGGAACAACAATACCCCATCTTTTGAATAGT ACGTCTAATAATCTGTATCTAAATTTTCAATCAGACATCAGTGTTTCTGCTGCAGGATTT CATCTTGAATACACAGCAATTGGTTTGGATTCCTGTCCTGAACCACAAACTCCTAGCAGT GGAATTAAAATTGGAGACAGATATATGGTTGGAGATGTAGTATCCTTTCAGTGTGATCAA GGATATTCTCTTCAGGGTCACTCTCACATTACATGTATGCCAGGACCTGTAAGAAGATGG AATTATCCAATCCCAATTTGTTTAGCTCAGTGTGGTGGTGCTATGTCAGACTTCAGTGGT GTGATCCTCAGTCCTGGGTTTCCTGGAAACTATCCCAGCAGTTTAGATTGCACATGGACA ATAAATCTACCCATAGGTTTTGGTGTACATCTCCAGTTTGTAAATTTTTCTACAGAAACC ATACATGATTATTTGGAAGTACGAAGTGGATCCTCAGAAACTAGTACTGTTATTGGCCGG CTTAGTGGTCCTCAAATACCATCTTCCTTATTCAGCACCACCCATGAAACCAGCTTATAT TTTCACAGTGACTATTCACAAAACAAACAAGGGTTTCATATTGTATACCAAGCCTATCAG TTGCAAAGCTGTCCTGATCCACGCCCGTTTCGAAATGGTTTTGTAATTGGTAATGATTTT ACTGTGGGTCAAACCATTTCATTTGAATGTTTCCCAGGATACACATTAATTGGAAATTCA GCTCTCACATGCCTTCACGGAGTCAGTCGTAATTGGAATCATCCACTTCCAAGGTGTGAA GCTCTTTGTGGTGGGAATATAACTGCAATGAATGGCACCATTTATTCTCCTGGGTATCCT GATGAATATCCAAACTTTCAAGATTGTTTTTGGCTTGTAAGAGTACCCCCTGGGAATGGC ATCTACATCAATTTTACTGTCCTTCAAACAGAACCAATATATGATTTCATTACTGTATGG GATGGACCAGACCAAAATTCACCTCAGATCGGTCAGTTCAGTGGCAATACCGCTTTGGAA TCAGTCTACAGTACTTCAAATCAGATTCTAATCAAATTCCACAGTGATTTCACAACAAGT GGCTTTTTTGTGCTCAGTTATCACGCCTATCAACTAAGGGTGTGCCAACCTCCACCACCT GTGCCCAATGCTGAAATTTTGACGGAAGATGATGAATTTGAAATAGGTGATATTATTAGG TATCAGTGTCTTCCAGGATTTACTTTAGTTGGTAATGCAATTCTGACGTGCAGATTAGGA GAACGACTGCAGATGGATGGAGCACCTCCAGTTTGTCAAGTGCTCTGTCCTGCCAATGAA TTACGGCTAGATTCTACTGGAGTCATATTGAGCCCTGGATATCCTGACAGTTACCCAAAT CTTCAAATGTGTGCATGGAGCATTTCAGTGGAAAAGGGTTATAATATCACCATGTTTGTA GAATTCTTCCAGACAGAAAAGGAATTTGATGTTCTTCAGGTGTATGATGGACCAAATATT CAAAGTCCAGTGCTTATTTCCCTCAGTGGGGATTATTCATCTGCTTTTAATATAACAAGC AATGGTCATGAAGTATTTCTTCAGTGGTCAGCAGATCATGGCAATAACAAAAAAGGCTTC CGGATAAGATATATAGCTTTCTACTGTAGTACACCAGAATCCCCACCTCATGGATATATT ATCAGTCAGACAGGTGGGCAGCTTAACAGTGTGGTCCGTTGGGCCTGTGATCGAGGATTC CGACTTGTTGGAAAAAGCAGTGCTGTGTGCAGAAAGTCTTCCTATGGGTATCATGCATGG GATGCGCCAGTCCCTGCCTGTCAAGCAATTTCCTGTGGGATTCCTAAAGCTCCAACAAAT GGAGGAATACTAACAACAGACTATTTGGTAGGAACGCGAGTTACCTATTTTTGTAATGAT GGATATCGATTGTCATCCAAAGAACTCACTACAGCTGTATGCCAATCAGATGGAACATGG AGCAATCATAACAAGACCCCTCGCTGTGTTGTTGTTACATGTCCAAGCATCAATTCCTTT ATCTTGGAACATGGAAGATGGCGAATTGTGAATGGCTCCCATTATGAATACAAAACCAAA GTAGTTTTCAGCTGTGACCCTGGTTATCATGGACTAGGTCCTGCCTCCATCGAATGTCTT CCTAATGGTACTTGGAGTTGGAGAAATGAAAGACCATATTGCCAAATTATTTCCTGTGGA GAACTACCTACACCTCCAAATGGAAATAAGATTGGAACTCAAACTTCATATGGCTCAACA GCTATCTTTACCTGCGACTTGGGATTCATGCTTGTGGGCTCTGCTGTAAGGGAATGCCTT TCCTCAGGTCTTTGGAGTGAATCTGAAACCAGATGCCTAGCGGGTCATTGTGGAATTCCA GAACTGATTGTGAATGGTCAAGTCATTGGAGAAAATTATGGATATAGAGACACAGTTGTA TATCAATGTAATCCTGGTTTTCGATTGATTGGTTCTTCAGTGAGGATATGTCAACAGGAT CACAATTGGTCTGGTCAGCTCCCATCCTGTGTGCCTGTTAGCTGTGGTCACCCTGGTAGT CCAATTTATGGAAGAACAAGTGGAAATGGGTTCAACTTTAATGATGTGGTAACATTCTCA TGCAATATTGGGTATCTTATGCAAGGGCCAACAAAGGCACAGTGCCAGGCCAACAGACAG TGGAGCCATCCTCCACCTATGTGCAAAGTGGTCAACTGTTCTGATCCTGGAATTCCAGCC AATTCTAAAAGAGAAAGTAAAATAGAACATGGAAATTTTACTTACGGCACTGTGGTATTC TATGACTGCAATCCTGGATATTTTTTATTTGGATCTTCAGTTTTGATATGTCAACCAAAT GGACAATGGGACAAACCTTTACCAGAATGTATCATGATTGACTGTGGACACCCTGGCGTT CCTCCTAATGCAGTCCTGTCTGGCGAGAAGTATACTTTTGGGTCTACTGTTCACTATTCC TGCACAGGAAAGCGTTCCCTTTTAGGCCAGTCATCAAGAACCTGCCAATTGAATGGCCAT TGGAGTGGATCACAACCTCATTGTTCAGGTGATGCTACTGGGACATGTGGCGATCCAGGT ACTCCCGGCCATGGCTCTAGACAGGAAAGCAATTTCAGAACTAAAAGTACTGTACGTTAT GCTTGTGATACTGGTTACATCCTTCATGGCTCAGAAGAAAGAACATGTTTAGCTAATGGC AGTTGGACCGGAAGGCAGCCAGAGTGCAAAGCTGTGCAGTGTGGTAACCCAGGAACCACA GCCAATGGGAAAGTCTTCCGAATTGATGGCACAACATTTTCTAGTTCAGTCATTTATTCC TGCATGGAGGGATACATCCTTTCTGGACCTTCAGTTAGACAGTGCACAGCCAATGGAACA TGGTCTGGAACTTTACCTAACTGTACAATAATCAGTTGTGGAGACCCAGGTATACCAGCC AATGGACTGAGATATGGAGATGATTATGTGGTTGGACAAAATGTTTCTTACATGTGCCAG CCAGGCTACACGATGGAATTGAATGGCTCCAGAATCAGGACTTGTACAATTAATGGCACA TGGAGTGGAGTAATGCCAACTTGTAGAGCTGTTACCTGCCCAACTCCTCCCCAGATCTCT AATGGAAGGCTGGAAGGAACAAATTTCGACTGGGGCTTTAGTATTAGCTACATCTGTTCT CCAGGCTATGAGCTATCCTTCCCTGCTGTTTTGACCTGTGTAGGGAATGGTACCTGGAGT GGTGAAGTACCGCAGTGCTTACCAAAGTTTTGTGGTGACCCTGGTATACCTGCCCAAGGA AAAAGAGAAGGCAAAAGCTTTATATACCAGTCAGAGGTTTCATTCAGCTGCAATTTTCCT TTCATATTAGTGGGATCAAGCACCAGAATATGTCAAGCAGATGGCACTTGGAGTGGTTCA TCACCTCACTGCATAGAGCCTACCCAAACCTCTTGTGAAAACCCAGGTGTGCCTCGGCAT GGATCTCAGAACAATACATTCGGATTTCAAGTAGGAAGTGTTGTACAGTTCCATTGCAAA AAAGGACACCTTCTCCAAGGGTCTACAACACGCACCTGCCTCCCTGATCTTACGTGGAGT GGGATTCAGCCTGAATGCATACCCCACAGCTGTAAACAGCCAGAAACTCCTGCTCATGCA AATGTCGTAGGGATGGACCTTCCATCTCATGGGTATACACTGATTTATACCTGTCAGCCT GGCTTCTTCTTAGCAGGTGGAACAGAACATAGAGTGTGTAGATCCGATAACACCTGGACT GGAAAAGTTCCCATTTGTGAAGCTGGTTCTAAAATATTGGTGAAAGATCCTAGACCTGCA CTGGGAACACCCAGCCCAAAGCTAAGTGTTCCTGATGATGTATTTGCCCAAAATTATATA TGGAAAGGCTCTTACAATTTCAAAGGAAGGAAACAACCCATGACCTTAACAGTTACTAGT TTCAATGCTTCCACTGGGAGAGTTAACGCAACACTGAGCAATAGCAACATGGAGCTGCTA CTTTCAGGGGTATATAAAAGCCAGGAAGCTCGCCTAATGTTACGCATATATCTTATTAAA GTACCTGCTCATGCTTCTGTGAAGAAAATGAAGGAAGAAAATTGGGCAATGGATGGCTTT GTTTCTGCTGAGCCTGATGGAGCTACTTATGTATTTCAAGGATTTATTCAAGGCAAAGAT TATGGACAATTTGGCCTACAAAGACTGGGACTGAATATGTCAGAAGGTTCAAATTCTTCA AATCAACCTCATGGTACAAATAGTAGTTCTGTAGCCATTGCTATTCTTGTGCCTTTTTTT GCACTTATATTTGCAGGATTTGGATTTTATCTTTATAAACAAAGGACTGCACCTAAAACA CAGTATACAGGATGTTCAGTTCATGAAAATAACAATGGCCAAGCAGCTTTTGAAAATCCC ATGTATGACACCAACGCAAAGTCAGTGGAAGGGAAGGCGGTACGATTTGATCCCAACTTG AACACGGTTTGCACAATGGTATAA |
Restriction Sites | Please inquire |
ACCN | NM_198123 |
ORF Size | 11124 bp |
OTI Disclaimer | Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery. Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP). |
OTI Annotation | This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA. |
Reference Data | |
RefSeq | NM_198123.1, NP_937756.1 |
RefSeq Size | 13150 |
RefSeq ORF | 11124 |
Locus ID | 114788 |
Protein Families | Druggable Genome, Transmembrane |
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