Gtf3c1 (NM_207239) Mouse Untagged Clone

CAT#: MC225168

Gtf3c1 (untagged) - Mouse general transcription factor III C 1 (Gtf3c1), (10ug)


  "NM_207239" in other vectors (2)

Reconstitution Protocol

USD 3,540.00

10 Weeks*

Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Gtf3c1
Vector pCMV6-Entry
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>MC225168 representing NM_207239
Red=Cloning site Blue=ORF Orange=Stop codon

TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC
GCCGCGATCGCC

ATGGACGCGCTCGAGTCGTTGTTGGACGAGGTGGCCCTGGAGGGGCTCGACGGCCTGTGCCTGCCCGCGC
TGTGGAGCCGCCTGGAATCCCGCTCGCCTGCCTTCCCATTGCCTCTGGAACCCTACACGCAGGAGTTTTT
GTGGCGGGCTTTAGCCACGCACCCGGGCATCAGTTTCTACGAGGAGCCGCGAGAGAGACCTGACCTGCAG
CTCCAAGACCGGTATGAAGAAATCGACTTGGAAACTGGGATTTTGGAGTCGAGGAGGGACCCGGTCACTC
TGGAGGATGTCTACCCCATTCACATGATCTTAGAGAACAAGGATGGCATCCAGGGCTCCTGCCGATACTT
TAAGGAGAGAAAGGACATCACCAGTAGCATCAGGAGCAAGTGTTTGCAGCCTCGATGTACAATGGTAGAA
GCCTTCAGCAGGTGGGGTAAGAAGCTCATCATTGTGGCTTCCCAGGACATGCGGTACCGGGCCTTGATAG
GCCTAGAGGGGGACCCTGATCTGAAGCTTCCCGATTTCTCCTACTGCATTCTGGAGCGCTTAGGTCGATC
CAGGTGGCAAGGAGAGCTGCAGCGAGACCTTCACACCACCGCTTTCAAGGTTGACGCTGGGAAGCTTCAT
TATCACAGGAAAATTTTGAACAAGAATGGGCTCATTACAATGCAGTCACATGTGATCCGATTACCTACTG
GAGCCCAGCAACACTCCATCCTCCTACTCCTTAACCGGTTTCATGTGGACAGGAGGAGCAAGTATGACAT
CCTCATGGAAAAGCTGTCTATGATGCTGAGCACACGGAGCAACCAGATTGAGACTCTGGGCAAGCTGAGG
GAGGAACTGGGGCTGTGTGAAAGGACATTCAAGCGTCTGTACCAGTACATGCTGAATGCTGGGCTGGCCA
AGGTGGTGTCCCTTCCCTTGCAGGAGATTCACCCTGAGTGTGGTCCCTGTAAGACCAAGAAAGGAACTGA
TGTCATGGTGCGCTGTCTTAAGCTCCTGAAGGAATTCAAGCGAAAGATGGAAGACGACCACGATGATGAT
GACGATGAGGAGGTCATCTCCAAGGGAGTCCCTCCTGTGGACATCGTCTTTGAGCGGGACATGCTCACGC
AGACCTACGAGCTCATTGAGCGCAGAGGAACGAAAGGAATTTCCCAAGCTGAGATCCGAGTTGCTATGAA
CGTGGGAAAGCTGGAAGCAAGAATGCTGTGTCGGCTCCTTCAGAGGTTCAAGGTTGTCAAGGGGTTCATG
GAAGATGAAGGCCGGCAGCGGACCACCAAGTACATTTCCTGTGTGTTTGCGGAGGAGAGTGACTTGAGCC
GACAATATGCTCGTGAAAAGGCCCGAGGAGAGCTACTAACCACTGTGAGCCTCGCCTCAGTGCAAGATGA
GTCCCTCATGCCTGAGGGCGAAGAGGCCTTCCTCTCTGACTCAGAAAGTGAGGAAGAGAGCAGCTGCAGT
GGTGGCAAGCGGAGGGGCCGAGGGTCCCGGGGCCATGCAAGAGCCTCAGGGGATGCTGGGTCTGGCTCTC
GGCCTCATCACTCCACTCCAGCCAAGGGCGGGTGGAAAGTCCTAAATCTGCACCCACTGAAGAAGCCGAA
AGCTGCCGCTGAGGAGAGGTCCCGCAGAAGCTCCGCTTGTAGGGATGGCCTGGACACCAGCAGCTCGTCT
GAGCTCAATGCCCCCTTCGACCCTCACAGCATGGACAGTCACAGTGGTGACATCGCTGTGATTGAGGAGG
TCCGGCTCGATAACCCCAAGGAGGGTGGTGGCTCCCAGAAAGGCGGACGGCATGGCTCAAGCCAGGACAA
GCCTCACAAAACATACCGACTGCTAAAGCGCAGAAATCTCATCATAGAAGCTGTCACCAACCTCCGCCTG
ATTGAGAGCCTGTTCACGATTCAGAAGATGATCATGGACCAGGAGAAGCAAGAGGGTGTCTCCACCAAAT
GCTGTAAGAAGTCCATTATCCGCTTGGTGCGGAACCTGTCTGAGGAGGGTCTCTTGCGATTGTATCGGAC
TACAGTCATTCAGGATGGCATCAAGAAGAAGGTAGATCTGGTCGTGCACCCATCTATGGACCAGAATGAT
CCTCTTGTGAGAAGTGCTATTGAGCAGGTTCGCTTCCGGATCTCCAACTCAAGCACAGCAAACAGAGTTA
AAGTTCCACCGGCCCCAGCGCCCCAAGAAGAAGCAGAAGAGGAAAACCAAGAACCAGAAGTCCCAAGTCG
ATCAGCAAACTCTGACCCAAACACATCCTCGAAGCCAGAAAGCACTCGGGTGAAAAAGACTGACGAGAAA
ATGGGCATAACCCCACTCAAAAATTATAAACCTGTCATAGTTCCTGGACTCGGGCGCTCCATAGGCTTCC
TTCCCAAGATGCCCCGCCTAAAGGCGATGCACCTGTTCCTGTGGTACCTGGTGTATGGGCATCCTGCCGG
CCACACTGGGGAGCAGCCTGCTCTCCACAGTGAGAGGAAAACGGGCAAGCAGGAGTCCAGCAGACCAGGG
GCTCAGCCCTCCTCAGGAGATGACTGGGACACCTCTGAAGCCAAAAACAACACAGAAAGCAGCTCCTGGG
AGTCAGAAATGGAACTCTCCACAGAGATAGTGTATGTGGATGAGATCTCATGGATGCGCTACGTCCCTCC
CATCCCGATCCACAGAGACTTTGGCTTTGGCTGGGCTCTTGTCAGTGACATTCTTCTCTGCCTGCCCCTC
TCCATCTTTGTCCAACTTGTTCAAGTCAGCTACAAGGTGGATAACCTGGAGGATTTTCTGAATGACCCGC
TGAAGAAGCACACACTGATCCGCTTCCTCCCCAGGCACATCCGGCAGCAGCTACTGTATAAGAGGCGGTA
TATTTTCTCGGTGGTGGAGAACCTGCAGCGGCTGTGTTACATGGGGCTGCTACAGTTTGGACCCACAGAG
AAGTTTCAGGATAAAGACCAGGTCTTTGTTTTCCTGAAGAAGAATGCAGTCATTGTGGACACCACCATCT
GTGACCCACATTACAACCTGGCCCACAGCAGCCGGCCTTTTGAGAGACGTCTCTACGTCCTGGATTCCAT
GCAGGATGTGGAATGCTACTGGTTTGACCTGCAGTGTATCTGCCTAAACACCCCACTAGGTGTGGTGCGT
TGCCCGTGTGCACAGAAGATCTGCCCTGATCCAGGCAGTGACCCAGAAGGCAGCTTGCGGAAGGAGCAGG
AGAGTGCCATGGACAAGCACAACCTAGAGCGCAAGTGTGCCATGCTGGAGTATACCACGGGGAGCCGAGA
AGTTGTGGATGAAGGCTTAGTCCCAGGGGATGGGCTGGGAGCTGCTGGGCTGGACTCCAGCTTCTATGCA
CACTTGAAGCGCAACTGGGTCTGGACCAGCTACATCATCAACAAAGCCAGAAAGAACAACACCTCCGAAA
ATGGGCTCACAGGAAGACTCCAGACCTTCCTGTCTAAGCGCCCAATGCCCCTTGGGTCCGGAGGCAGTGG
CCGTTTGCCTCTCTGGTCAGAGGGGAGAGCTGATGCTGAGCTCTGTGCTGACAAGGAAGAACAATTTGAA
CTGGACAGAGAACCTACCCCTGGCAGGAACCGGAAAGTGCGTGGTGGGAAGAGCCAGAAGCGGAAGCGGC
TGAAGAAGGAGCCTATAAGGAAGACCAAGCGAAGAAGAAGAGGAGAGCATCCAGAAGCCAAAAGCAAAAA
GCTACGCTACCAAGATGAGGCTGACCAGAACGCCCTCCGGATGATGACCCGGCTGCGTGTCTCTTGGTCC
ATGCAGGAGGATGGGCTGCTAATGCTCTGCCGGATCGCCAGCAACGTCCTCAACACCAAGGTGAAAGGAC
CATTTGTCACCTGGCAGGTCGTGCGGGACATTTTGCATGCTACCTTTGAAGAGTCTTTGGATAAAACCTC
TCACTCGGTTGGACGAAGAGCTCGCTACATAGTCAAAAATCCCCAGGCTTTCATGAACTACAAGGTCTGT
CTGGCAGAAGTGTACCAAGATAAGGCACTTGTTGGAGATTTCATGAGTCGGAAGGGTAACTACGAAGACC
CAAAGGTTTGTGCCAAGGAGTTTAAAGAATTTGTAGAGAAACTGAAAGAGAAGTTCAGCTCTGGCCTGAG
GAACCCCAATCTCGAGATCCCCAACACACTGCAGGAACTCTTTGCCAAGTACCGAGTGTTGGCGATCGGG
GATGAGAAGGACCGAGTCAGGAAGGAGGATGAGCTGAATAGTGTGGAGGACATCCACTTCCTGGTGCTAC
AGAACCTGATCCAGAGCACACTGTCCCTCTCTAACAGCCAGTCCAACTCTTGCCAGTCCTTCCAGATCTT
CCGCCTCTACCGGGAGTTCCGGGAGCCCGTGCTGGTGCGGGCCTTCATGGAGTGCCAAAAGAGGAGCCTG
GTCAACCGACGCCGTGTCAGCCACTCCCAGGGCCCCAAGAAGAACCGTGCCGTGCCCTTTGTGCCCATGT
CCTACCAGCTCTCCCAGTCATACTACAAGCTTTTCACCTGGCGATTTCCCACCACCATCTGCACTGAATC
CTTCCAGTTCTACGACAGACTGCGGACCAACGGCATGCTAGACCAGCCTGATCATTTTTCTTTCAAGGAC
CTGGATAGCAGTGACCCTTCAAATGACCTGGTGGCATTTTCTTTGGACAGCCCTGGAGGACACTGTGTAA
CAGCCCTGGCCCTCTTCTCTTTGGGGCTCCTCTCTGTGGATGTCAGAATCCCAGAGCAGATCGTGGTGGT
GGACAGCTCCATGGTGGAGAGTGAGGTCATGAAGAGCTTGGGGAAAGATGGTGGCTTGGATGATGACGAG
GAAGAGGAAGACCTGGATGAAGGTTCAGGGACCAAGCGCCAGGGTGTGGAAGTAAAGGCCCATCAGGCCT
CACACACCAAGTACCTGCTGATGAGAGGTTACTACACAGTGCCTGGCATGGTCAGCACACGCAACCTGAA
CCCCAATGACAGCATCGTGGTCAACTCCTGCCAGGTTAAATTCCGACTGCGCAACACCCCTGCATCCACC
CAGCTTGGGCCCACTGGGTTCACAGCCACACCACTGGAAGAGCTCCAGGCTGGTCTTTCCTGCCTCCCTG
CCTCCTTTACCAGCCTGGTGGATCCACAGCTGCGTACCCACTGCCCAGAAGAGTTTGCCCACCAGATGGC
ACAGTCAGGGTATAGTCCTGAGGATGTGGCTGCCTCCCTAGAGATCCTGCAGGCTGTAGCAGCTGCTGAC
TGCTTCGGGATTGACAAGGAGAAGCTGAGCAGGCAGTTCTCCGCCTTGGAGAAGATAGCGGACAGGCGCA
CCAGGACGTTCCTGGACTACATCCAGGACCTCTTGGAACAGGAACAAGTCATGGAAGTTGGAGGTAACAC
TGTGCGCCTAGTGACCATGGCCTCTGCACAGCCCTGGCTTCTGCATTCAATGCGTCTGAGAGACATGGAA
GTAGACACTAAGGCCTCAGGGGATGACAGCCAATCCAGACTCCCTGAGGGGCCTTCCATCGAAGACCACA
CCTCTGAGGGAGCAGCGGTGCCTCCAGTCAGCTCCCATAGCACTAAAAAGCGTCCCCACTGCCCTGAGAC
TGATGCTGAGGAAGCCACAAGGCTCCCTGCCAAGAAGCCCACACTACAGGATGTCCGTGTGGCTGCCAGC
CCTAGGCCTGGAGCGGAAGAGCAGGCAGAGGCCCAGGCCCCAGCTCAGCTTGCAGCTCCTGAAGATGCAG
ATGCAGGGGGCCCCAGACAGGAGAACCAAGAGAATGTTGGTGTCTCAGGCCTAGAGCAGCTGGGCTGTGA
GTTCCAGCTTCCAGAAGGCTCTGAAGACCCCAGAGGCCTTACAGAGAGTAACATGGCCCAGGCAGCGTGG
GAGAGTGGCTGTGAGAGAGTGTGTTTCGTCGGCCGCCCATGGCGAGGTGTGGATGGGCACCTGAACATGC
CCGTGTGCAAAGGCATGCTGGAGGCTGTGCTCTACCACATCATGTCAAGGCCCGGCGTTCCCGAGAGCTG
CCTGCTGCAGTACTACCAGGGCGTCCTGCAGCCTGTTGCTGTCCTTGAGCTGCTCCGGGGCCTGGAGTCC
CTCGGCTGTATCCAGAAGCGGACTCTGAGGAAGCCAGCGAGTGTCTCGCTCTTCTCCAGGCCTGTGGTGG
AGGGCCTGGGTCAGGCCAGTGAGGCTGAGGCGCTCTCCTGCCACGAGAGCACTGTCACCTTCTATGAGCC
CACGCTGGACTGTACCATCCGTCTGGGCCGTGTCTTCCCCCATGATATCAACTGGAACAAGTGGATCCAT
TTATAG


ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT
ACAAGGATGACGACGATAAGGTTTAA
Restriction Sites SgfI-MluI     
ACCN NM_207239
ORF Size 6306 bp
Insert Size 6306
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_207239.1, NP_997122.1
RefSeq Size 6891
RefSeq ORF 6306
Locus ID 233863

Other Versions

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