Scn8a (NM_011323) Mouse Untagged Clone

CAT#: MC225097

Scn8a (untagged) - Mouse sodium channel, voltage-gated, type VIII, alpha (Scn8a), transcript variant 2, (10ug)


  "NM_011323" in other vectors (2)

Reconstitution Protocol

USD 3,350.00

8 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Scn8a
Synonyms AI853486; C630029C19Rik; dmu; med; mnd-2; mnd2; NaCh6; Nav1.6; nmf2; nmf58; nmf335; nur14; seal
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225097 representing NM_011323
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGCAGCGCGGCTGCTCGCACCACCAGGCCCCGACAGTTTCAAGCCTTTCACCCCCGAGTCGCTGGCAA
ACATCGAGAGGCGCATCGCCGAGAGCAAGCTCAAGAAACCACCCAAGGCGGATGGCAGCCACCGGGAGGA
CGATGAAGACAGCAAGCCCAAGCCAAACAGTGACCTGGAGGCGGGGAAGAGTTTGCCTTTCATCTACGGG
GACATCCCGCAAGGCCTGGTTGCGGTTCCCCTGGAGGACTTTGACCCGTACTATTTGACGCAGAAAACTT
TTGTAGTATTAAACAGAGGGAAAACTCTCTTCAGATTTAGCGCCACTCCTGCCTTGTACATTCTAAGTCC
TTTTAACCTGATAAGAAGAATAGCTATTAAAATTTTGATACATTCAGTCTTCAGCATGATCATCATGTGC
ACCATCCTGACCAACTGTGTATTCATGACTTTTAGTAACCCTCCCGAATGGTCCAAGAATGTGGAGTACA
CATTCACAGGGATTTACACATTTGAATCACTGGTGAAAATCATCGCCAGAGGTTTCTGCATAGACGGCTT
CACCTTCTTACGAGACCCGTGGAACTGGTTAGACTTCAGTGTCATCATGATGGCATATGTGACAGAGTTT
GTGGACCTGGGCAATGTCTCAGCGCTGAGAACATTCAGGGTTCTCCGAGCTTTGAAAACTATCTCTGTAA
TTCCAGGCCTGAAGACAATCGTGGGCGCCCTCATCCAGTCTGTGAAGAAGCTGTCAGACGTGATGATCCT
GACGGTGTTCTGCCTGAGTGTCTTCGCCCTGATTGGCCTGCAGCTCTTCATGGGGAACCTTCGAAACAAG
TGTGTCGTGTGGCCCATAAACTTCAACGAGAGCTATCTGGAGAACGGCACCAGAGGCTTCGACTGGGAGG
AGTATATCAACAATAAAACAAACTTTTACATGGTCCCTGGCATGCTAGAACCCTTGCTCTGCGGGAACAG
CTCTGACGCCGGGCAATGCCCAGAGGGGTTCCAGTGCATGAAAGCAGGAAGAAATCCCAACTACGGCTAC
ACCAGCTTCGACACCTTCAGCTGGGCCTTCCTGGCACTGTTCCGCCTCATGACTCAGGACTACTGGGAGA
ACTTATACCAGCTGACCTTACGAGCGGCTGGGAAAACGTACATGATCTTCTTTGTCTTGGTGATCTTCGT
GGGTTCTTTCTATTTGGTGAACTTGATCTTGGCTGTGGTGGCCATGGCTTACGAAGAGCAGAACCAGGCA
ACACTGGAGGAGGCAGAGCAGAAAGAGGCAGAGTTCAAGGCGATGCTGGAGCAGCTCAAGAAGCAGCAGG
AGGAGGCGCAGGCTGCTGCAATGGCCACTTCGGCGGGCACCGTCTCAGAAGATGCCATTGAAGAAGAAGG
GGAAGATGGGGTAGGCTCTCCGAGGAGCTCATCTGAGCTGTCTAAACTCAGTTCCAAGAGCGCGAAGGAG
CGTCGGAACCGACGGAAGAAGAGGAAGCAGAAGGAGCTCTCTGAAGGGGAGGAGAAGGGGGACCCCGAGA
AGGTGTTTAAGTCAGAGTCGGAAGATGGCATGAGAAGGAAGGCCTTCCGGCTGCCAGACAATAGGATAGG
GAGGAAATTTTCCATCATGAATCAGTCGCTGCTCAGCATCCCAGGCTCGCCCTTCCTTTCCCGACACAAC
AGCAAAAGCAGCATCTTCAGCTTTCGGGGTCCTGGACGGTTCCGGGACCCCGGTTCGGAGAACGAGTTCG
CAGACGACGAGCACAGCACAGTGGAGGAAAGTGAGGGCCGGCGCGACTCGCTCTTCATCCCGATCCGCGC
CCGCGAGCGCCGCAGCAGCTACAGCGGCTACAGCGGCTACAGCCAGTGCAGCCGCTCGTCGCGCATCTTC
CCCAGCCTGCGGCGCAGCGTGAAACGCAACAGCACCGTGGACTGCAATGGCGTGGTGTCGCTCATCGGGC
CTGGCTCGCACATCGGGCGGCTCCTGCCTGAGGCAACAACTGAGGTGGAGATTAAGAAGAAAGGCCCTGG
ATCGCTCTTAGTCTCCATGGAACAACTCGCCTCCTACGGACGGAAGGACAGAATCAACAGTATAATGAGC
GTTGTCACAAACACACTAGTGGAAGAGCTGGAAGAGTCTCAGAGAAAGTGCCCACCATGCTGGTATAAGT
TTGCCAATACTTTCCTCATCTGGGAGTGTCACCCCTACTGGATAAAACTGAAGGAGATTGTGAACCTGAT
CGTCATGGACCCTTTCGTAGACTTAGCCATAACCATCTGCATTGTCCTGAACACACTATTTATGGCAATG
GAGCACCATCCCATGACGCCACAATTCGAACATGTCCTGGCCGTAGGGAACCTGGTGTTCACTGGGATCT
TCACGGCGGAAATGTTCCTGAAGCTCATAGCCATGGATCCCTACTATTACTTCCAAGAAGGCTGGAACAT
TTTTGACGGATTTATCGTCTCCCTCAGTTTAATGGAGCTGGGCCTTGCAGACGTGGAGGGGCTCTCAGTG
CTGCGATCTTTCCGATTGCTCCGAGTCTTCAAATTGGCCAAGTCCTGGCCCACCCTGAACATGCTGATCA
AGATCATTGGGAACTCCGTTGGCGCCCTGGGCAACCTGACCCTGGTGCTGGCCATCATTGTCTTCATCTT
TGCCGTGGTGGGGATGCAGCTCTTTGGAAAGAGCTACAAGGAGTGCGTCTGTAAGATCAGCCAGGAGTGC
AAGCTCCCGCGCTGGCACATGAACGACTTCTTCCACTCCTTCCTCATCGTCTTCCGAGTGCTGTGTGGGG
AGTGGATCGAGACCATGTGGGATTGCATGGAAGTGGCCGGCCAGGCCATGTGCCTTATCGTGTTCATGAT
GGTCATGGTCATCGGCAACCTGGTGGTGCTGAACTTATTTCTGGCCTTGCTTCTGAGCTCCTTCAGCGCA
GACAATCTGGCGGCCACGGACGACGACGGGGAAATGAACAACCTGCAGATATCGGTGATCCGGATCAAGA
AGGGCGTGGCCTGGGCCAAAGTGAAGGTGCATGCCTTCATGCAGGCACACTTCAAGCAACGGGAGGCTGA
TGAAGTGAAACCTTTAGACGAGCTGTATGAGAAGAAGGCCAACTGCATCGCCAACCACACCGGCGTGGAC
ATTCACAGGAACGGCGACTTCCAGAAAAATGGAAATGGCACCACTAGCGGCATCGGCAGCAGCGTGGAGA
AGTACATCATCGACGAGGACCACATGTCCTTCATTAACAACCCAAACCTGACCGTGCGGGTGCCCATTGC
TGTGGGCGAGTCTGATTTCGAGAACCTCAACACAGAGGATGTTAGCAGCGAGTCAGACCCCGAAGGCAGC
AAAGACAAACTGGACGATACCAGCTCCTCAGAAGGGAGTACCATCGACATCAAGCCTGAGGTGGAAGAAG
TCCCAGTGGAGCAGCCTGAGGAATACTTGGATCCAGACGCCTGCTTCACGGAGGGTTGTGTCCAGAGGTT
CAAGTGCTGCCAGGTCAACATCGAGGAAGGACTAGGCAAGTCGTGGTGGATCCTGCGGAAAACCTGCTTC
CTCATTGTGGAGCACAATTGGTTTGAGACCTTCATCATTTTCATGATTCTCCTCAGCAGTGGAGCCCTGG
CCTTCGAGGACATCTACATTGAGCAGAGGAAGACCATCCGTACCATCCTGGAGTATGCGGACAAGGTCTT
CACCTACATCTTCATCCTGGAGATGTTGCTCAAATGGACAGCCTATGGCTTCGTCAAGTTCTTCACCAAT
GCCTGGTGCTGGTTGGACTTCCTCATTGTGGCTGTCTCTTTAGTCAGCCTTATAGCTAATGCCCTGGGCT
ACTCGGAACTAGGTGCCATAAAGTCCCTTAGGACCCTAAGAGCTTTGAGACCCTTAAGAGCCTTATCACG
ATTTGAAGGGATGAGGGTGGTGGTGAACGCCTTGGTGGGCGCCATCCCCTCCATCATGAACGTGCTGCTG
GTGTGTCTCATCTTCTGGCTGATTTTCAGCATCATGGGCGTTAACCTGTTTGCTGGGAAATACCACTACT
GCTTCAACGAGACTTCAGAAATCCGGTTCGAAATCGACGAGGTGAACAATAAAACCGACTGTGAGAAGCT
CATGGAGGGCAACAACACAGAGATCCGATGGAAGAACGTCAAGATCAACTTCGACAACGTCGGGGCAGGC
TACCTGGCCCTTCTTCAAGTGGCAACCTTCAAAGGCTGGATGGACATCATGTATGCAGCTGTAGATTCCC
GAAAGCCGGACGAGCAGCCTGATTATGAGGGCAACATCTACATGTACATCTACTTCGTCATCTTCATCAT
CTTCGGCTCCTTCTTCACCCTCAACCTGTTCATCGGTGTCATCATCGACAATTTCAATCAACAGAAGAAA
AAGTTTGGAGGTCAGGACATCTTCATGACAGAGGAACAGAAGAAGTACTACAACGCCATGAAGAAGCTAG
GCTCCAAGAAGCCACAGAAGCCCATCCCCCGACCTTTGAACAAAATCCAAGGGATTGTCTTTGATTTCGT
CACGCAACAAGCCTTCGACATCGTGATCATGATGCTTATCTGCCTTAACATGGTGACCATGATGGTGGAG
ACAGACACACAGAGCAAGCAGATGGAGAACATTCTCTACTGGATTAATCTGGTCTTCGTCATCTTCTTCA
CCTGCGAGTGTGTGCTCAAAATGTTTGCCTTGAGACACTACTATTTCACCATTGGCTGGAACATCTTTGA
CTTTGTGGTGGTCATTCTCTCCATTGTGGGAATGTTCCTGGCTGATATCATTGAGAAGTACTTCGTCTCC
CCGACCCTATTCCGCGTCATCCGATTGGCCCGCATCGGGCGCATCTTGCGTCTGATCAAGGGCGCCAAAG
GGATCCGCACCCTGCTCTTTGCCTTAATGATGTCGCTGCCCGCCCTGTTCAACATCGGCCTCCTGCTCTT
CCTGGTCATGTTCATCTTCTCCATCTTTGGGATGTCCAACTTCGCGTACGTGAAGCACGAGGCCGGCATT
GATGACATGTTCAACTTCGAGACGTTTGGCAACAGCATGATCTGCCTGTTCCAGATCACGACCTCTGCTG
GTTGGGATGGCTTACTGCTGCCAATCCTGAACCGCCCCCCTGACTGCAGCTTGGACAAGGAGCACCCAGG
AAGTGGCTTCAAAGGGGACTGCGGGAACCCCTCCGTGGGCATCTTCTTCTTCGTCAGCTACATCATCATC
TCCTTTCTGATCGTGGTAAACATGTACATTGCCATCATCTTGGAGAACTTCAGCGTAGCCACAGAGGAAA
GCGCCGATCCTCTGAGCGAGGACGACTTCGAGACTTTCTATGAGATCTGGGAGAAGTTTGATCCTGATGC
CACCCAGTTCATCGAGTACTGTAAGCTGGCCGACTTTGCCGACGCCCTGGAGCATCCGCTCCGAGTACCC
AAGCCCAACACCATCGAGCTCATCGCCATGGACCTGCCCATGGTGAGCGGAGATCGAATCCACTGCTTGG
ACATCCTTTTCGCCTTCACCAAGCGAGTCCTGGGAGACAGTGGGGAGTTGGACATCCTGCGGCAGCAGAT
GGAGGAGCGGTTCGTGGCGTCCAATCCTTCCAAAGTGTCTTACGAGCCTATCACGACCACTCTGCGGCGC
AAGCAGGAAGAGGTGTCTGCAGTGGTCTTGCAGCGTGCTTACAGGGGACACCTGGCTAGGCGGGGCTTCA
TCTGCAGAAAGATCACTTCCAACAAGCTGGAGAATGGAGGCACCCACCGAGAGAAGAAGGAGAGCACCCC
GTCCACAGCCTCCCTCCCCTCTTACGACAGCGTGACAAAGCCCGACAAGGAGAAGCAGCAGCGGGCAGAG
GAAGGCAGGAGGGAAAGAGCCAAGAGGCAAAAAGAAGTCAGGGAGTCCAAGTGCTAG


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_011323
ORF Size 5937 bp
Insert Size 5937
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.

The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
Reference Data
RefSeq NM_011323.3, NP_035453.2
RefSeq Size 11241
RefSeq ORF 5937
Locus ID 20273

Other Versions

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