Scn5a (NM_021544) Mouse Untagged Clone
CAT#: MC225126
Scn5a (untagged) - Mouse sodium channel, voltage-gated, type V, alpha (Scn5a), (10ug)
"NM_021544" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Scn5a |
Synonyms | mH1; Nav1.5; Nav1.5c; SkM1; SkM2 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225126 representing NM_021544
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCAAACTTCCTGTTACCTCGGGGCACCAGCAGCTTCCGTAGGTTCACCCGGGAGTCACTGGCGGCCA TCGAGAAGCGCATGGCTGAAAAACAAGCCCGTGGTTCGGCCACCTCACAGGAGAGCCGTGAGGGCCTGCC AGAGGAGGAGGCTCCCCGGCCCCAGCTGGACCTACAGGCCTCCAAAAAGCTGCCAGATCTCTATGGCAAC CCACCCCGAGAGCTCATTGGGGAGCCCCTGGAAGACCTGGACCCTTTCTATAGTACCCAGAAGACCTTCA TCGTGCTGAATAAGGGCAAAACCATCTTCCGGTTCAGTGCCACCAATGCCTTGTACGTCCTCAGCCCCTT CCACCCGGTGCGCAGAGCGGCTGTGAAGATTTTGGTACATTCGCTCTTCAGCATGCTCATCATGTGCACC ATCCTAACCAACTGTGTGTTCATGGCACAACACGACCCTCCGCCTTGGACCAAATATGTTGAGTACACCT TCACCGCCATCTACACCTTTGAGTCTCTGGTCAAGATTCTAGCTCGAGGCTTCTGCCTGCATGCGTTCAC CTTCCTCCGGGACCCGTGGAACTGGCTAGACTTCAGTGTGATCGTCATGGCGTATGTATCAGAGAATATA AAGCTAGGCAATTTGTCGGCTCTTCGAACTTTCAGAGTCCTGAGAGCTCTGAAAACGATTTCAGTTATTC CAGGCCTGAAGACAATCGTGGGAGCCCTAATCCAGTCTGTGAAGAAGCTAGCCGATGTGATGGTCCTTAC TGTCTTCTGCCTCAGTGTCTTTGCCCTCATTGGCCTGCAGCTCTTCATGGGCAACCTGAGGCACAAGTGC GTGCGTAACTTTACTGAGCTCAATGGCACCAATGGTTCCGTGGAGGCCGATGGCATAGTCTGGAACTCTC TGGACGTCTACCTCAATGACCCAGCCAATTACCTACTCAAGAATGGCACCACGGATGTGTTGCTGTGTGG GAACAGCTCTGATGCCGGGACATGTCCTGAAGGCTACCGGTGCCTGAAGGCAGGTGAGAACCCTGACCAC GGTTACACCAGCTTCGACTCCTTCGCCTGGGCTTTCCTTGCGCTCTTCCGCCTGATGACACAGGACTGCT GGGAACGTCTATACCAGCAGACCCTGAGGTCCGCAGGAAAGATCTACATGATCTTCTTCATGCTTGTCAT ATTCCTGGGCTCCTTCTACCTTGTGAACTTGATCCTGGCTGTGGTGGCCATGGCTTACGAGGAGCAAAAC CAAGCCACCATCGCCGAGACGGAAGAGAAGGAGAAGCGTTTCCAGGAGGCCATGGAGATGCTCAAGAAGG AACACGAGGCTCTCACCATCAGGGGCGTGGATACTGTGTCCCGTAGCTCTCTGGAGATGTCTCCTTTGGC CCCAGTAACCAACCATGAGAGAAGGAGCAAGAGGAGGAAACGACTGTCTTCAGGGACAGAGGATGGCGGA GATGACAGGCTCCCCAAGTCGGACTCAGAAGACGGTCCCAGAGCATTGAATCAGCTCAGCCTCACCCATG GGCTCAGCCGGACATCCATGAGGCCCCGCTCCAGCCGAGGGAGCATTTTCACATTCCGGCGACGGGACCA AGGCTCCGAGGCAGATTTTGCAGATGACGAGAACAGTACAGCAGGAGAGAGCGAGAGCCACCGCACATCG CTGCTGGTGCCCTGGCCCCTGCGCCGTCCCAGCACCCAAGGGCAGCCCGGCTTTGGAACCTCAGCTCCTG GTCATGTCCTCAATGGCAAAAGAAACAGCACCGTGGACTGCAATGGGGTGGTTTCCTTGCTGGGGGCAGG GGACGCAGAGGCCACCTCTCCAGGGAGCCACCTTCTCCGCCCTATAGTGCTGGACAGACCCCCAGACACG ACCACGCCGTCAGAGGAGCCGGGTGGGCCCCAGATGCTGACACCGCAGGCTCCATGTGCAGATGGCTTTG AGGAGCCCGGGGCACGGCAACGGGCACTCAGCGCCGTCAGTGTCCTCACCAGCGCTCTGGAAGAGTTGGA GGAGTCCCACCGTAAGTGTCCACCATGCTGGAATCGCTTTGCCCAGCATTACCTCATCTGGGAGTGCTGC CCACTCTGGATGTCCATCAAGCAGAAGGTGAAGTTCGTGGTCATGGACCCGTTTGCTGACCTCACCATCA CCATGTGCATCGTGCTCAACACGCTCTTCATGGCTCTGGAGCACTACAACATGACAGCCGAGTTTGAGGA GATGCTGCAGGTCGGAAACTTGGTCTTCACGGGAATCTTCACGGCAGAGATGACCTTCAAGATCATCGCC CTTGACCCATACTACTACTTCCAGCAGGGCTGGAATATCTTCGACAGCATCATCGTCATCCTCAGCCTCA TGGAGCTGGGCCTGTCTCGCATGGGCAACCTGTCTGTGCTGCGTTCCTTCCGTCTGCTGCGGGTCTTCAA GCTGGCCAAATCATGGCCCACCCTGAACACACTCATCAAGATCATCGGGAACTCTGTTGGTGCCCTGGGG AACCTGACCCTGGTGCTGGCCATCATCGTCTTCATCTTCGCCGTGGTGGGTATGCAGCTCTTCGGCAAGA ACTACTCAGAGCTGAGGCACCGAATCAGCGACTCTGGCCTGCTGCCCCGCTGGCACATGATGGACTTCTT CCACGCCTTCCTCATCATCTTCCGCATCCTCTGTGGAGAGTGGATCGAGACCATGTGGGACTGCATGGAG GTGTCTGGGCAGTCGCTGTGCTTGCTGGTCTTCCTGCTGGTCATGGTCATTGGCAACCTTGTGGTCCTGA ATCTCTTCTTGGCCTTGCTGCTCAGCTCCTTCAGCGCAGACAACCTCACAGCCCCTGACGAGGATGGGGA GATGAACAACCTCCAGCTGGCCCTGGCTCGCATCCAAAGGGGCCTTCGCTTTGTCAAGCGGACCACCTGG GACTTCTGCTGCGGGCTCCTGCGGCGGCGACCTAAGAAGCCCGCGGCTCTTGCCACCCACAGCCAGCTGC CCAGCTGTATCGCCGCTCCCAGGTCCCCACCACCCCCAGAGGTGGAGAAGGCGCCCCCAGCCCGCAAGGA AACACGGTTCGAGGAAGACAAGCGGCCGGGCCAGGGCACCCCTGGGGATACCGAGCCTGTGTGTGTTCCC ATCGCAGTGGCTGAGTCAGACACTGATGACCAGGAAGAGGATGAGGAGAACAGCCTTGGCACGGAGGAGG AAGAGTCCAGCAAACAGCAGGAATCCCAAGTTGTGTCTGGTGGCCACGAGCCCCCCCAGGAGCCCAGGGC CTGGAGCCAGGTGTCAGAGACCACATCCTCTGAAGCCGAGGCCAGTACGTCTCAGGCAGACTGGCAGCAA GAGCGGGAAGCGGAGCCCCGGGCCCCGGGGTGCGGTGAGACTCCCGAGGACAGTTACTCCGAGGGTAGCA CCGCTGACATGACCAACACCGCAGACCTCCTGGAGCAAATCCCAGACCTCGGGGAGGACGTCAAGGACCC AGAGGACTGCTTCACTGAAGGCTGCGTCCGACGTTGTCCTTGCTGCATGGTGGACACGACGCAGGCCCCA GGGAAGGTCTGGTGGAGACTGCGCAAGACCTGCTACCGCATAGTGGAGCACAGCTGGTTCGAGACTTTCA TCATCTTCATGATCCTGCTCAGCAGCGGAGCGCTGGCCTTCGAGGACATCTACCTGGAGGAGCGGAAGAC CATCAAGGTTCTGCTGGAGTACGCCGACAAGATGTTCACCTATGTCTTTGTGTTGGAGATGCTGCTCAAG TGGGTGGCCTACGGCTTCAAGAAGTACTTCACCAACGCCTGGTGCTGGCTGGACTTCCTAATTGTGGACG TCTCACTGGTCAGCCTCGTGGCCAACACCTTAGGCTTTGCCGAGATGGGTCCCATCAAGTCCCTGAGGAC ACTGCGTGCACTTCGACCCCTGAGGGCTTTGTCACGATTCGAGGGCATGAGGGTGGTGGTCAACGCGCTG GTGGGCGCCATCCCCTCCATCATGAATGTCCTCCTCGTCTGCCTCATCTTCTGGCTCATCTTCAGCATCA TGGGCGTGAACCTCTTCGCCGGGAAGTTCGGTAGGTGCATCAACCAGACCGAAGGGGACCTGCCTCTGAA CTACACCATTGTGAACAACAAGAGCGAGTGTGAGTCCTTCAACGTGACTGGAGAGTTGTACTGGACCAAG GTGAAAGTCAACTTTGACAACGTGGGGGCTGGGTACCTGGCCCTGCTGCAGGTGGCGACATTTAAAGGCT GGATGGACATCATGTATGCGGCTGTGGACTCCAGAGGGTATGAAGAGCAGCCGCAGTGGGAGGACAACCT CTACATGTACATCTACTTCGTCGTCTTCATCATCTTCGGCTCCTTCTTCACCCTCAACCTGTTTATTGGT GTCATCATTGATAACTTCAACCAGCAGAAGAAAAAGTTAGGGGGCCAGGACATCTTCATGACGGAGGAGC AGAAGAAGTACTACAATGCCATGAAGAAGCTGGGCTCCAAGAAACCCCAGAAGCCCATCCCACGGCCTCT GAACAAGTACCAGGGTTTCATATTCGACATTGTGACCAAGCAGGCCTTCGATGTTACCATCATGTTCCTC ATCTGTTTAAACATGGTGACCATGATGGTAGAGACAGATGATCAGAGCCCTGAAAAAGTCAACATCTTGG CCAAGATCAACCTGCTCTTCGTGGCCATCTTCACAGGAGAGTGTATTGTCAAGATGGCTGCCCTGCGCCA CTATTACTTCACCAACAGCTGGAACATCTTCGATTTCGTGGTTGTCATCCTCTCCATCGTTGGCACTGTC CTCTCCGACATCATCCAGAAGTACTTCTTCTCCCCAACGCTCTTCCGTGTCATCCGTCTGGCCAGGATCG GCCGCATCCTCAGGCTGATCCGAGGAGCCAAGGGGATTCGCACGTTGCTCTTCGCCCTCATGATGTCCCT GCCCGCCCTCTTCAACATCGGCCTCCTCCTCTTCCTCGTCATGTTCATCTACTCCATCTTCGGCATGGCC AACTTTGCCTACGTCAAGTGGGAGGCTGGCATCGACGACATGTTCAACTTCCAGACCTTTGCCAACAGCA TGCTGTGCCTTTTCCAGATCACCACGTCGGCTGGCTGGGATGGCCTCCTCAGCCCCATCCTCAACACAGG ACCCCCCTACTGTGACCCCAACCTGCCCAACAGCAATGGCTCCAGGGGGAACTGTGGGAGCCCAGCAGTG GGCATCCTCTTCTTCACCACCTACATCATCATCTCCTTCCTCATCGTGGTCAACATGTACATTGCCATCA TCCTGGAGAACTTCAGTGTGGCCACAGAAGAGAGCACAGAGCCCCTGAGCGAGGATGACTTCGACATGTT CTATGAGATCTGGGAGAAGTTCGACCCGGAGGCCACCCAGTTCATTGAGTATTTGGCCCTGTCCGACTTT GCCGATGCCCTGTCTGAGCCACTCCGCATCGCCAAGCCCAACCAGATAAGCCTCATCAATATGGACCTGC CCATGGTGAGCGGGGACCGCATCCACTGTATGGACATCCTGTTCGCCTTCACCAAGAGGGTGCTCGGGGA GTCTGGGGAGATGGATGCCCTGAAGATCCAGATGGAGGAGAAATTCATGGCGGCCAATCCTTCCAAGATC TCCTATGAGCCCATCACCACCACCCTGCGGCGAAAACATGAGGAGGTGTCGGCCACGGTCATCCAGCGGG CCTTCCGGAGGCACCTCCTGCAGCGCTCGGTGAAGCATGCTTCCTTCCTCTTCCGCCAGCAAGCGGGCAG CAGTGGCCTCTCTGATGAGGATGCCCCCGAGCGAGAGGGACTCATTGCCTACATGATGAATGAGAACTTC TCCCGGCGCAGCGGTCCCCTCTCCAGCTCTTCCATCTCCTCCACGTCCTTCCCACCGTCCTATGACAGCG TCACGAGGGCCACCAGTGATAACCTCCCAGTGCGTGCGTCGGACTACAGCCGCAGCGAAGATCTTGCAGA CTTCCCTCCATCTCCAGATAGGGACCGAGAGTCTATAGTGTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_021544 |
ORF Size | 6063 bp |
Insert Size | 6063 |
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_021544.4, NP_067519.2 |
RefSeq Size | 8455 |
RefSeq ORF | 6063 |
Locus ID | 20271 |
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