Scn10a (NM_009134) Mouse Untagged Clone
CAT#: MC225081
Scn10a (untagged) - Mouse sodium channel, voltage-gated, type X, alpha (Scn10a), transcript variant 2, (10ug)
"NM_009134" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Scn10a |
Synonyms | Nav1.8; PN3; SNS |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225081 representing NM_009134
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGAGTTCCCCTTTGGGTCCGTGGGAACTACCAACTTCAGACGGTTCACTCCAGAGTCGCTGGCAGAGA TCGAGAAGCAGATCGCTGCCCACCGCGCCGCCAAGAAGGGCAGACCTAAGCAAAGAGGACAGAAGGACAA GAGTGAGAAGCCCAGGCCTCAGTTGGACTTGAAGGCCTGTAACCAGCTGCCCAGGTTCTATGGCGAGCTC CCAGCAGAGCTGGTCGGGGAGCCCCTGGAGGACCTGGATCCTTTCTACAGCACACACCGGACATTCATAG TGTTGGATAAAAGCAGGACCATTTCCAGATTCAGTGCCACTTGGGCTCTGTGGCTCTTCAGTCCCTTCAA CCTGATCAGAAGAACAGCCATCAAAGTGTCCGTCCACTCCTGGTTCTCCATATTTATCACTGTCACTATT TTGGTCAACTGTGTGTGCATGACCCGAACTGATCTTCCAGAGAAACTCGAGTATGCCTTCACTGTTGTTT ACACCTTCGAGGCTCTGATAAAGATACTGGCAAGAGGGTTTTGTCTAAATGAATTCACTTATCTTCGAGA TCCCTGGAACTGGCTGGACTTCAGTGTCATTACCCTGGCGTATGTGGGTGCAGCGATAGACCTCCGAGGA ATCTCAGGCCTGCGGACATTCCGAGTTCTCAGGGCCCTGAAGACTGTTTCTGTGATCCCAGGACTGAAGG TCATCGTGGGAGCCCTGATCCACTCAGTGAGGAAGCTGGCCGACGTGACCATCCTCACAGTCTTCTGCCT GAGTGTCTTTGCCTTGGTGGGCCTGCAGCTCTTCAAGGGGAACCTCAAGAATAAATGCATTAAGAACGGC ACAGATCCGCACAAGGCTGACAATCTCTCATCTGAAATGGCAGGAGACATCTTCATCAAGCCCGGTACTA CGGATCCCTTGTTGTGTGGCAATGGATCTGATGCTGGCCACTGCCCTAATGATTATGTCTGCCGGAAAAC TTCTGACAACCCGGATTTTAACTACACCAGCTTTGATTCCTTCGCGTGGGCGTTCCTCTCACTGTTCCGT CTCATGACGCAGGACTCCTGGGAACGGCTGTACCAGCAGACACTCCGGGCTTCCGGGAAAATGTACATGG TCTTTTTTGTGCTGGTCATCTTCCTTGGATCATTCTACCTGGTCAATTTGATCTTGGCTGTGGTCACCAT GGCATATGAGGAACAGAGCCAGGCAACAATTGCAGAAATCGAAGCCAAGGAGAAGAAGTTCAAGGAAGCC CTCGAGGTGCTGCAGAAAGAACAGGAGGTGCTGGCAGCGCTGGGCATTGACACAACCTCGCTCTATTCCC ACAACGGATCACCCTTAGCCCCCAAAAACGCCAATGAGAGAAGACCCAGGGTGAAATCAAGGATGTCAGA AGGCTCGACAGATGACAACAGATCACTACAATCCGACCCTTACAACCAGCGCAGGATGTCTTTCCTAGGC CTTTCTTCTGGAAGACGCAGGGCTAGCCACAGCAGTGTGTTCCACTTCCGAGCACCCAGCCAAGACGTCT CATTTCCTGATGGGATCTTGGATGACGGGGTCTTTCATGGAGATCAGGAAAGCCGTCGAAGTTCCATATT GCTGGGCAGGGGTGCCGGGCAGGCAGGTCCTCTCCCCAGGAGTCCACTGCCTCAGTCCCCCAACCCTGGC CCTAGACGTGGAGAAGAGGGACAGCGTGGAGTGCCCACTGGTGAGCTTGCCACTGGAGCGCCTGAAGGCC CGGCACTCGATGCTGCAGGACAGAAGAACTTCCTGTCTGCAGACTACTTGAATGAACCTTTCCGAGCACA GAGGGCAATGAGTGTTGTCAGTATTATGACTTCTGTCATTGAGGAGCTGGAAGAGTCTAAGCTGAAGTGC CCACCCTGCTTGATCAGCTTAGCCCAGAAGTACCTGATATGGGAGTGCTGCCCCAAGTGGAAGAAATTCA AGATGGTGCTCTTCGAGCTGGTGACTGACCCCTTCGCAGAGCTCACCATCACCCTGTGCATTGTGGTGAA TACCGTCTTCATGGCCATGGAACACTACCCCATGACTGATGCCTTCGATGCCATGCTCCAAGCCGGCAAC ATTGTCTTTACTGTGTTTTTTACAATGGAGATGGCCTTCAAGATCATTGCCTTCGACCCCTACTACTACT TCCAGAAGAAGTGGAACATCTTCGACTGTGTCATCGTCACCGTGAGCCTGCTGGAGCTGAGCACATCCAA GAAGGGCAGCTTGTCTGTGCTCCGCACCTTCCGCTTGCTTCGGGTCTTCAAGCTGGCCAAGTCCTGGCCC ACCCTGAACATGCTCATCAAGATCATCGGGAACTCTGTGGGGGCCCTGGGCAACCTGACCTTCATCCTGG CCATCATCGTCTTTATCTTCGCCCTGGTGGGAAAGCAGCTCCTCTCAGAGAACTATGGGTGCCGCAGGGA TGGCATCTCCGTGTGGAATGGTGAGAGGCTGCGCTGGCACATGTGTGACTTCTTCCATTCCTTCCTCGTC GTCTTCCGGATCCTCTGCGGGGAGTGGATCGAGAACATGTGGGTCTGCATGGAGGTCAGCCAGGACTACA TCTGCCTCACCCTCTTCTTGACAGTGATGGTGCTAGGCAACCTGGTGGTGCTCAACCTATTCATCGCTTT ACTGCTGAACTCCTTCAGTGCGGACAACCTCACAGCCCCAGAGGATGACGGGGAGGTGAACAACTTGCAG GTAGCACTGGCCCGGATTCAGGTATTTGGCCATCGGGCCAGTCGGGCCATTACCAGTTACATCAGAAGCC ACTGCCGGCTCCGCTGGCCCAAGGTGGAGACCCAGCTGGGGATGAAACCCCCACTCACCAGCTGCAAAGC TGAGAACCACATTGCTACTGATGCTGTCAATGCTGCAGTGGGGAACCTGGCAAAGCCAGCTCTTGGTGGC CCCAAGGAGAACCACGGGGACTTCATCACTGATCCTAACGTGTGGGTCTCTGTGCCCATTGCTGAGGGGG AGTCCGACCTTGATGAGCTCGAGGAAGATGTGGAGCATGCTTCTCAGAGCTCCTGGCAGGAAGAGAGCCC CAAAGGGCAGGAGCTGCTGCAGCAAGTCCAAAAGTGTGAAGATCACCAGGCAGCCCGAAGCCCACCCTCC GGGATGTCCTCTGAGGACCTGGCTCCATACCTGGGGGAGAGATGGCAGAGGGAGGAGAGCCCTCGGGTCC CTGCCGAGGGAGTGGATGACACAAGCTCCTCCGAGGGCAGCACGGTGGACTGCCCGGACCCAGAGGAGAT CCTGAGGAAGATCCCTGAGCTGGCGGAGGAGCTGGACGAGCCCGATGACTGTTTCCCAGAAGGCTGCACT CGCCGCTGTCCCTGCTGCAAAGTGAACACCAGTAAGTTTCCTTGGGCCACGGGCTGGCAGGTGCGCAAAA CCTGTTACCGCATTGTGGAGCACAGCTGGTTTGAGAGTTTCATTATCTTCATGATCCTGCTCAGCAGTGG AGCGCTGGCCTTTGAGGATAACTACCTGGAAGAAAAGCCCCGAGTGAAGTCTGTGCTGGAGTACACTGAC AGAGTGTTCACCTTCATCTTTGTATTCGAGATGTTGCTCAAGTGGGTAGCTTATGGCTTCAAAAAATATT TCACCAATGCCTGGTGCTGGCTGGACTTCCTCATCGTGAATATCTCCCTCACAAGCCTCATAGCCAAGAT CCTCGAGTATTCAGACGTGGCGTCCATCAAAGCCCTTCGGACTCTCCGTGCCCTCCGGCCGCTGCGGGCT CTGTCTCGATTCGAAGGCATGAGGGTAGTGGTGGATGCCTTGGTGGGCGCCATTCCCTCCATCATGAACG TCCTCCTCGTCTGCCTCATCTTCTGGCTCATCTTCAGCATCATGGGTGTGAACCTCTTCGCCGGGAAATT TTCGAGATGTGTCGACACCAGAAGCAACCCATTTTCCGTCGTGAATTCGACATTCGTGACTAACAAGTCT GACTGTTACAATCAAAACAATACTGGCCACTTCTTCTGGGTTAACGTCAAAGTCAACTTCGACAACGTTG CTATGGGCTACCTCGCGCTTCTCCAGGTGGCAACCTTCAAAGGCTGGATGGACATTATGTATGCAGCTGT CGATTCTCGAGATATCAACAGTCAGCCCAATTGGGAGGAGAGCCTGTACATGTACCTATACTTCGTCGTC TTCATCATTTTCGGTGGCTTCTTCACGCTGAATCTCTTTGTCGGGGTCATCATTGACAACTTCAATCAAC AGAAAAAAAAGCTAGGGGGCCAGGACATCTTCATGACAGAGGAGCAGAAGAAGTACTACAATGCCATGAA GAAGCTGGGCTCCAAGAAACCCCAGAAGCCCATCCCACGGCCTTTGAATAAGTACCAGGGCTTCGTGTTT GACATTGTGACCAGGCAAGCATTTGACATCATCATCATGGCTCTCATCTGCCTCAACATGATCACCATGA TGGTGGAGACCGACAATCAGAGCGAGGAGAAGACGAAGGTCCTGGGCAGAATCAACCAGTTCTTCGTGGC CGTCTTCACGGGCGAGTGTGTGATGAAGATGTTCGCCCTTCGGCAGTATTACTTCACCAACGGCTGGAAT GTGTTCGACTTCATTGTGGTGATTCTGTCCATTTCTAGTCTGTTGTTTTCTGCGATCCTTAGCTCACTAG AAAGTTACTTCTCCCCCACGCTCTTACGCGTCATCCGTCTGGCCAGGATCGGCCGCATCCTCAGGCTGAT TCGAGCAGCCAAGGGGATTCGCACGCTGCTCTTCGCCCTCATGATGTCCCTGCCCGCCCTCTTCAACATC GGCCTCCTCCTCTTCCTCGTCATGTTCATCTACTCCATCTTCGGCATGGCCAGCTTCGCTAATGTCATAG ATGAGGCTGGCATCGACGACATGTTCAACTTCAAGACCTTTGGCAACAGCATGCTGTGCCTTTTCCAGAT CACCACGTCGGCTGGCTGGGATGGCCTCCTCAGCCCCATCCTCAACACAGGACCCCCCTACTGCGACCCC AACCGGCCCAACAGCAATGGCTCCAAGGGGAATTGTGGAAGCCCAGCGGTGGGCATCCTCTTCTTCACCA CCTACATCATCATCTCCTTCCTCATCGTGGTCAACATGTACATTGCAGTGATTCTGGAGAACTTCAATGT GGCCACAGAAGAGAGCACGGAGCCCCTGAGCGAGGACGACTTTGACATGTTCTATGAGACCTGGGAGAAG TTTGACCCGGAGGCCACCCAGTTCATTGCCTTTTCTGCCCTCTCAGACTTTGCAGACACACTCTCTGGCC CTCTTAGAATCCCAAAACCTAATCAGAATATATTAATCCAGATGGACCTGCCGTTGGTCCCCGGAGATAA GATCCACTGTTTGGACATCCTCTTTGCCTTCACAAAGAATGTCTTGGGAGAATCTGGGGAGTTGGATTCT CTGAAGACTAATATGGAAGAGAAGTTTATGGCAACTAATCTTTCCAAAGCATCCTATGAACCAATAGCAA CCACCCTCCGGTGCAAGCAGGAAGACATCTCAGCCACCATTATTCAAAAGGCCTATCGGAACTACATGTT GCAACGCTCCTTGATGCTCTCCAACCCCCTGCATGTGCCCAGGGCTGAGGAGGATGGCGTGTCACTCCCC AGGGAAGGCTATGTTACATTCATGGCAAATGACAACGGTGGGCTCCCAGACAAATCGGAAACTGCTTCTG CTACGTCTTTCCCACCATCCTATGACAGCGTCACCAGGGGCCTGAGTGACAGGGCCAACATTAGCACATC TAGCTCAATGCAAAATGAAGATGAAGTCACTGCTAAGGAAGGGAAGAGCCCTGGACCTCAGTGA AGCGGACCGACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCC TGGATTACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-RsrII |
ACCN | NM_009134 |
ORF Size | 5874 bp |
Insert Size | 5874 |
OTI Disclaimer | 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). |
Reference Data | |
RefSeq | NM_009134.3, NP_033160.2 |
RefSeq Size | 6413 |
RefSeq ORF | 5874 |
Locus ID | 20264 |
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