Acly (NM_134037) Mouse Untagged Clone

CAT#: MC205217

Acly (untagged) - Mouse ATP citrate lyase (Acly), transcript variant 2, (10ug)


  "NM_134037" in other vectors (4)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Mouse Untagged Clone
Tag Tag Free
Symbol Acly
Synonyms A730098H14Rik; AW538652
Vector PCMV6-Kan/Neo
E. coli Selection Kanamycin (25 ug/mL)
Mammalian Cell Selection Neomycin
Sequence Data
>BC056378
GAACAAAAGCCGGATCCCCGGCTGCTGCAGGCGGCTGGAGCGATCCGAAGAGTTGGGGTGAGCTGGTGCT TACGGACAGAGAGCCACACTCAGGCTTTCTCGAAGAGGTAAACCAGGTCTCTCTGCAGCCATGTCAGCCA AGGCAATTTCAGAGCAGACCGGCAAAGAACTCCTGTACAAGTACATCTGCACCACCTCGGCCATCCAGAA CCGGTTCAAGTACGCCCGGGTGACTCCCGACACAGACTGGGCCCATCTGCTGCAGGACCACCCGTGGCTG CTCAGCCAGAGCTTGGTTGTCAAGCCAGACCAGTTAATCAAACGTCGAGGAAAGCTTGGCCTCGTCGGGG TCAATCTCTCTCTGGATGGAGTCAAATCCTGGCTAAAACCTCGCCTGGGACATGAAGCCACTGTCGGCAA GGCCAAAGGCTTCCTCAAGAACTTTCTCATTGAACCCTTCGTCCCCCACAGTCAGGCGGAGGAGTTCTAC GTGTGCATCTATGCTACCCGGGAAGGAGACTACGTCCTGTTCCACCATGAAGGGGGTGTGGATGTGGGCG ATGTGGATGCCAAAGCCCAGAAGCTGCTTGTGGGTGTGGACGAAAAGCTGAATACCGAGGACATTAAGAG ACACCTGTTGGTCCATGCACCTGAGGACAAGAAAGAAGTCCTGGCCAGCTTCATCTCTGGTCTATTCAAT TTCTACGAGGATCTGTACTTCACCTACCTTGAGATCAACCCCCTTGTGGTGACCAAAGATGGTGTCTACA TCCTTGACTTGGCGGCCAAGGTGGATGCCACAGCTGACTACATCTGTAAAGTCAAGTGGGGTGATATAGA GTTCCCTCCCCCCTTTGGGCGTGAGGCGTACCCCGAGGAAGCCTACATTGCAGACCTGGATGCCAAAAGT GGAGCAAGCTTGAAGCTGACCTTGCTGAACCCCAAGGGGCGGATCTGGACCATGGTTGCTGGGGGTGGCG CCTCCGTCGTGTACAGTGACACCATCTGTGATCTTGGAGGTGTCAATGAACTGGCGAATTACGGGGAATA CTCGGGTGCCCCCAGTGAACAACAGACCTATGACTATGCCAAGACCATCCTCTCACTTATGACTCGAGAG AAGCACCCAGAAGGCAAGATCCTCATCATTGGAGGCAGCATTGCAAACTTCACCAATGTGGCCGCCACCT TCAAGGGCATTGTGAGAGCGATTCGAGATTACCAGGGTCCCCTGAAGGAGCATGAGGTCACCATCTTTGT CCGAAGAGGTGGCCCCAACTATCAAGAGGGATTACGAGTGATGGGAGAAGTTGGGAAGACCACTGGGATC CCCATCCATGTCTTTGGCACAGAAACTCACATGACGGCCATTGTGGGCATGGCCCTGGGCCACCGGCCCA TTCCCAACCAGCCACCCACAGCAGCTCACACTGCCAACTTCCTCCTTAATGCCAGCGGGAGCACATCGAC TCCAGCACCCAGTAGGACAGCATCTTTTTCTGAGTCCCGAGCTGATGAAGTGGCACCTGCAAAGAAAGCC AAGCCAGCTATGCCCCAAGGAAAGAGTGCCACCCTCTTCAGCCGACATACCAAGGCCATCGTGTGGGGCA TGCAGACCCGGGCTGTGCAGGGCATGCTGGACTTTGACTACGTGTGTTCCCGAGACGAGCCCTCAGTGGC TGCCATGGTCTACCCTTTCACTGGGGATCACAAGCAGAAGTTTTACTGGGGACACAAGGAAATCCTGATC CCTGTCTTCAAGAACATGGCTGACGCCATGAAGAAGCACCCGGAGGTAGACGTGCTGATCAACTTTGCGT CTCTGCGGTCCGCTTACGACAGCACCATGGAGACCATGAACTATGCCCAGATCCGCACCATAGCCATCAT AGCAGAAGGTATCCCTGAGGCCCTCACACGGAAGCTCATCAAGAAGGCCGACCAGAAGGGAGTGACCATC ATTGGGCCAGCTACGGTTGGGGGCATTAAGCCTGGATGCTTTAAGATCGGGAATACTGGTGGAATGCTGG ACAACATCCTGGCCTCCAAACTGTACCGCCCAGGCAGCGTGGCCTACGTCTCACGTTCAGGAGGCATGTC TAATGAACTCAATAACATCATCTCTCGGACCACAGATGGTGTCTATGAGGGCGTGGCCATCGGCGGGGAC AGGTACCCTGGGTCCACATTCATGGATCACGTGCTGCGCTACCAGGACACTCCAGGAGTCAAGATGATCG TAGTTCTTGGGGAGATAGGGGGCACAGAGGAATATAAGATCTGCCGGGGCATCAAGGAGGGCCGCCTCAC CAAGCCAGTGGTCTGCTGGTGTATCGGGACCTGTGCCACCATGTTCTCCTCCGAGGTCCAGTTTGGCCAT GCTGGAGCTTGTGCCAACCAGGCTTCTGAAACTGCAGTAGCCAAGAACCAGGCCTTGAAGGAAGCAGGAG TGTTTGTGCCCCGAAGCTTCGATGAGCTTGGAGAAATCATTCAGTCTGTGTATGAAGATCTGGTGGCCAA AGGAGCCATTGTACCTGCCCAGGAAGTGCCACCTCCAACAGTGCCCATGGACTACTCTTGGGCCAGAGAG CTGGGTTTGATCCGAAAACCTGCCTCATTCATGACCAGCATCTGTGATGAGCGAGGGCAGGAGCTCATTT ATGCGGGCATGCCCATCACCGAGGTCTTCAAGGAGGAGATGGGCATCGGTGGTGTCCTCGGCCTCCTCTG GTTCCAGAGAAGGTTGCCCAAGTATTCCTGCCAGTTCATTGAGATGTGTCTGATGGTCACAGCTGATCAC GGGCCAGCTGTCTCTGGAGCCCATAACACCATCATCTGTGCTCGGGCTGGGAAGGACCTGGTCTCCAGCC TCACCTCAGGGCTGCTCACCATTGGAGACCGGTTTGGGGGTGCCTTGGATGCCGCAGCAAAGATGTTCAG TAAAGCCTTTGACAGCGGCATCATTCCCATGGAGTTCGTCAACAAGATGAAGAAGGAGGGGAAGCTGATC ATGGGCATCGGCCATCGAGTAAAATCGATAAACAACCCAGACATGCGAGTGCAGATCCTCAAGGACTTCG TCAAACAGCACTTCCCCGCCACCCCGCTGCTCGACTATGCCCTGGAAGTGGAGAAGATTACCACCTCCAA GAAGCCAAATCTTATCCTGAATGTGGACGGCTTCATCGGCGTTGCGTTTGTGGACATGCTCAGGAACTGT GGCTCCTTCACCCGGGAGGAAGCTGATGAATATGTTGACATTGGAGCCCTCAATGGCATCTTTGTGCTAG GAAGGAGTATGGGCTTCATTGGGCACTACCTTGACCAGAAGAGGCTGAAGCAAGGGCTGTATCGTCACCC CTGGGATGACATTTCCTATGTTCTTCCAGAACACATGAGCATGTAACTGAGCCAGGAGCCCTACTGTAGG AAAAGGAAGACAAAAACCCCCTCCTCAACAATATAGTGGACAGATAGCTGGAAGCAGAGTCCAGTATAGG CTGGGCCTGGAGCGGAAATAGCCATTGATGTGCAGGCATGGAAGGCCGACACCCACAGGCCCATTCAGTC CACACAAAGAAGCTTAGTATTTTTTTTATATATCTCTCTATATATAAGCATAGAAATTTAAAACCAAGCC AATACCTGTGACATTTGCTCTGCTACCTGCTGTATCTATTATATGGAAAAGTCTCAGCAAGCACTGTCAG AATAGTGTTCTTCTAGGGCCTTATGATGTTGCTTTCTTTTTTTTAATTAGTTAAAAAATTTATTTTTCCT CTAGAGGAAGGGAATGCAAGTTTTAAGATTTTAAGATACTATCTGTAGGACCACTGTCTGGTATCCCATT TCCCGTTCAGCTTCACACAACGTGAAGAACACTGTATTAATCTGATTTTTAAGGATCTTTTTTTTTTCTA TGTTATGTGTTAAGGGTTTATTTAGTATCCCACTGAAATGTTCCATGTTACAGACCAGTGTCTACTTATG TCAAGGGGAGGAGGGCTGGGACCATTGTATCCTTAGCCATTGTTGCACATGTGGTGTAGTAACTTAAATG TCAAGTTGTAACATACAAGTGTTTAAAATGGAAACGCAAAGCAAAAAGCTGTGAAATGTCTTGTGTCAGT GTCCTCTGTGTTCATGCAGCCGACTTGTCTGTTACTGAAGTGTGGGTCCAAAGACTCACAGCTGTTCTGC ATCTGTAACCCACAAAGATTCTGGGCAGCTGCCACCTCAGTCTCTTCTCTGTGTTATCTATCATGTTTGC TTTAAATAAACTAGATAGTAACAAAAAAAAAAAAAAAAAAAAAAAA
Restriction Sites AscI-NotI     
ACCN NM_134037
ORF Size 3276 bp
Insert Size 3276
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 BC056378, AAH56378
RefSeq Size 4316
RefSeq ORF 3276
Locus ID 104112

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