ABCA12 (NM_015657) Human Untagged Clone
CAT#: SC304339
ABCA12 (untagged)-Human ATP-binding cassette, sub-family A (ABC1), member 12 (ABCA12), transcript variant 2
"NM_015657" in other vectors (2)
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Specifications
Product Data | |
Type | Human Untagged Clone |
Tag | Tag Free |
Symbol | ABCA12 |
Synonyms | ARCI4A; ARCI4B; ICR2B; LI2 |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>NCBI ORF sequence for NM_015657, the custom clone sequence may differ by one or more nucleotides
ATGTTTACCTATATAAAAATTATTACTTCAGGTGACTCCGATAATATAACGCATGTGTGGAATGAGGATG ATGGACAGACCTTATCTCCAAGCAGTCTGGCTGCACAGCTCCTAATTCTGGAAAACTTTGAAGATGCCCT CTTAAATATATCAGCAAATAGTCCTTATATTCCTTACTTGGCATGTGTGAGAAATGTGACTGACAGTTTG GCCAGAGGTTCACCAGAAAATCTAAGACTCCTGCAGTCCACAATACGATTTAAAAAATCTTTTCTTCGCA ATGGTTCCTATGAAGATTACTTTCCTCCAGTTCCTGAAGTCCTAAAATCAAAACTGTCTCAACTTCGAAA CTTGACCGAACTTCTTTGTGAATCTGAAACTTTCAGTTTGATAGAGAAGTCATGCCAGCTCTCTGATATG AGCTTTGGGAGCCTGTGTGAAGAAAGTGAGTTTGATCTGCAACTCCTCGAAGCGGCAGAGCTGGGCACCG AAATAGCAGCCAGCTTACTGTACCATGACAATGTCATATCTAAAAAAGTGAGAGATTTGCTGACTGGAGA TCCAAGCAAAATTAATTTAAATATGGATCAGTTTCTAGAACAGGCACTGCAAATGAATTACTTGGAAAAT ATCACTCAGTTAATACCGATCATAGAAGCCATGCTGCATGTCAATAACAGTGCAGATGCTTCTGAAAAGC CAGGTCAGTTACTAGAAATGTTTAAAAATGTTGAAGAGCTGAAAGAAGATTTAAGGAGAACAACAGGAAT GTCCAACAGGACTATTGACAAGTTGCTGGCCATTCCCATCCCTGATAATAGAGCTGAGATTATTTCTCAG GTGTTCTGGCTGCATTCCTGTGATACTAATATCACCACTCCCAAACTAGAAGATGCAATGAAAGAATTCT GCAACCTGTCTCTTTCAGAGAGATCCCGGCAGTCTTACCTCATCGGACTCACCCTTCTGCACTACTTAAA CATTTACAACTTCACATACAAGGTGTTTTTCCCGAGGAAAGATCAAAAGCCAGTAGAAAAGATGATGGAG CTCTTCATAAGACTAAAAGAGATTCTCAATCAGATGGCTTCTGGCACACATCCGCTGCTAGACAAAATGA GATCCCTGAAGCAAATGCATCTGCCCAGAAGTGTTCCATTAACACAGGCAATGTACAGAAGCAACCGAAT GAACACACCACAAGGATCATTTAGCACCATCTCCCAAGCATTATGTTCTCAAGGAATTACCACTGAATAT TTAACTGCCATGCTGCCCTCTTCCCAGAGGCCAAAAGGCAACCACACCAAGGATTTTTTGACTTATAAAT TAACTAAAGAGCAAATTGCTTCAAAATATGGAATTCCCATAAATTCCACACCATTTTGCTTCTCCCTTTA TAAAGACATCATTAACATGCCCGCTGGACCTGTGATTTGGGCTTTCTTGAAACCTATGTTGTTGGGAAGA ATTTTGTATGCACCATATAACCCAGTCACAAAGGCAATAATGGAAAAGTCCAATGTAACTCTGAGACAGC TGGCGGAATTAAGAGAAAAATCTCAAGAGTGGATGGATAAGTCGCCACTTTTCATGAATTCCTTCCATCT GTTAAACCAGGCAATTCCAATGCTCCAGAATACTCTAAGGAACCCTTTTGTGCAAGTTTTTGTAAAGTTC TCCGTGGGACTCGATGCTGTTGAACTATTGAAACAGATAGATGAACTCGATATTCTAAGACTGAAATTAG AGAACAACATTGACATCATCGATCAGCTTAACACACTATCTTCCCTGACAGTAAATATTTCCTCTTGTGT ATTATATGACCGTATTCAGGCAGCAAAAACCATAGATGAAATGGAGAGAGAGGCTAAAAGGCTCTACAAA AGCAACGAACTCTTTGGAAGTGTTATTTTTAAGCTTCCTTCTAACAGAAGCTGGCACAGAGGCTATGACT CTGGAAATGTCTTTCTTCCTCCTGTCATAAAATATACCATCCGGATGAGTCTCAAGACCGCACAGACCAC AAGAAGCCTAAGAACCAAGATTTGGGCTCCAGGGCCACACAATTCTCCATCACACAACCAGATCTATGGC AGGGCTTTTATTTATTTACAGGATAGTATTGAAAGAGCAATCATTGAATTGCAAACTGGAAGGAACTCCC AGGAAATAGCAGTCCAGGTTCAAGCAATTCCTTATCCCTGCTTCATGAAAGACAACTTCCTAACCAGTGT CTCTTATTCTCTTCCAATTGTGCTTATGGTTGCCTGGGTTGTATTTATAGCTGCCTTTGTAAAAAAGCTT GTCTATGAGAAAGACCTCCGGCTTCATGAGTACATGAAGATGATGGGTGTGAACTCCTGCAGCCATTTCT TTGCCTGGCTTATAGAGAGTGTTGGATTTTTACTGGTTACCATCGTGATCCTCATCATTATACTCAAGTT TGGCAATATTCTTCCTAAAACAAATGGGTTCATTTTGTTCCTGTATTTTTCGGACTACAGCTTCTCGGTT ATTGCCATGAGCTATCTTATCAGTGTCTTCTTCAACAACACCAACATTGCAGCTCTGATCGGAAGCCTCA TCTACATCATTGCCTTCTTTCCATTTATTGTTCTGGTTACAGTGGAGAATGAGTTGAGCTATGTATTGAA AGTGTTCATGAGCCTGCTGTCCCCAACAGCATTCAGCTATGCAAGCCAATACATTGCACGATACGAAGAA CAGGGCATTGGTCTTCAGTGGGAAAATATGTACACCTCCCCGGTTCAGGATGACACCACCTCATTTGGCT GGCTGTGCTGTCTAATCCTAGCTGACTCTTTCATTTATTTCCTTATTGCTTGGTATGTCAGGAATGTCTT CCCAGGGACATACGGTATGGCAGCTCCCTGGTATTTTCCAATTCTTCCTTCCTATTGGAAGGAGCGATTT GGGTGTGCAGAGGTGAAGCCTGAGAAGAGCAATGGCCTCATGTTTACTAACATCATGATGCAGAACACCA ACCCATCTGCCAGTCCTGAATACATGTTTTCCTCTAACATCGAGCCTGAACCTAAAGATCTCACAGTCGG GGTTGCCCTGCATGGGGTCACAAAGATCTATGGCTCAAAAGTTGCTGTTGATAACCTCAATCTGAACTTT TATGAAGGGCATATTACTTCATTGCTGGGGCCCAATGGAGCTGGGAAAACTACTACCATTTCCATGTTAA CTGGGCTGTTTGGGGCCTCAGCAGGCACCATTTTTGTATATGGAAAAGATATCAAAACAGACCTACACAC GGTACGGAAGAACATGGGAGTCTGTATGCAGCACGACGTCTTGTTCAGTTACCTCACTACTAAGGAGCAC CTTCTCCTATATGGTTCCATCAAAGTTCCTCACTGGACTAAAAAGCAGCTCCACGAGGAAGTAAAAAGGA CTTTAAAAGATACTGGACTATATAGCCATCGTCATAAGAGAGTTGGAACACTGTCAGGAGGCATGAAGAG GAAGTTATCTATATCCATAGCTCTCATTGGTGGATCAAGGGTAGTAATTTTGGATGAACCATCTACTGGA GTTGACCCATGTTCTCGCCGAAGTATATGGGATGTTATATCCAAGAACAAAACTGCCAGAACAATCATTC TGTCAACGCACCACTTGGACGAGGCTGAAGTGCTGAGTGACCGCATCGCCTTCCTGGAGCAGGGTGGGCT TAGGTGCTGTGGGTCCCCATTTTACCTCAAGGAAGCCTTTGGCGATGGGTATCACCTCACGCTTACCAAG AAGAAGAGTCCAAATTTAAATGCAAATGCAGTATGTGACACCATGGCCGTGACAGCAATGATCCAATCAC ATCTCCCCGAAGCCTACCTCAAGGAGGATATTGGGGGAGAGCTTGTTTATGTACTTCCTCCATTCAGCAC CAAAGTCTCAGGGGCCTACCTGTCACTCCTACGGGCACTCGACAATGGCATGGGTGACCTCAACATCGGG TGCTACGGCATTTCAGATACCACCGTGGAGGAGGTCTTTCTGAACTTGACCAAAGAGTCACAAAAAAATA GTGCTATGAGTCTTGAGCACTTAACACAAAAGAAAATTGGGAATTCCAATGCCAATGGCATCTCAACTCC TGACGATTTATCTGTGAGCAGCAGCAATTTCACAGACAGAGATGACAAAATCCTGACAAGAGGAGAGAGG CTGGATGGCTTTGGACTGTTGCTGAAGAAGATCATGGCTATACTCATCAAGAGGTTCCACCACACCCGCA GGAACTGGAAAGGTCTCATTGCTCAGGTTATCCTCCCCATCGTCTTTGTTACCACTGCCATGGGCCTTGG CACACTGAGAAATTCCAGCAACAGTTATCCAGAGATTCAGATCTCCCCCTCTCTTTATGGTACCTCCGAA CAGACAGCCTTCTATGCTAATTATCACCCGAGCACGGAAGCACTTGTCTCAGCAATGTGGGACTTCCCTG GAATTGACAACATGTGTCTGAACACCAGTGATCTACAGTGTTTAAACAAAGACAGTCTGGAAAAATGGAA CACCAGTGGAGAACCCATCACTAATTTTGGTGTTTGCTCCTGCTCAGAAAATGTCCAGGAATGTCCTAAA TTTAACTATTCCCCACCGCACAGAAGAACTTACTCATCCCAGGTAATTTATAACCTCACTGGGCAACGAG TGGAAAATTATCTTATATCAACTGCAAATGAGTTTGTCCAAAAAAGATATGGAGGTTGGAGTTTTGGGCT GCCTTTGACAAAAGACCTTCGTTTTGATATAACAGGAGTCCCTGCCAATAGAACACTTGCCAAGGTATGG TATGATCCAGAAGGCTATCACTCCCTTCCAGCTTACCTCAACAGCCTGAATAATTTCCTTCTGCGAGTTA ACATGTCAAAATACGATGCTGCCCGACATGGCATCATCATGTATAGCCATCCTTATCCAGGAGTGCAAGA CCAAGAACAAGCCACAATCAGCAGTTTAATCGATATTTTAGTGGCACTGTCTATCTTGATGGGCTACTCT GTCACCACCGCCAGCTTTGTCACCTATGTTGTAAGGGAACATCAAACCAAAGCCAAACAGTTGCAGCACA TTTCAGGCATTGGCGTGACATGCTACTGGGTAACAAACTTCATTTATGACATGGTTTTCTACTTGGTGCC TGTAGCGTTTTCAATTGGTATCATTGCGATTTTCAAATTACCTGCATTCTACAGTGAAAACAACCTAGGC GCTGTATCTCTCCTACTTCTCCTGTTTGGGTATGCAACATTTTCCTGGATGTACTTGCTGGCTGGGCTCT TCCATGAAACAGGAATGGCCTTCATCACTTACGTCTGTGTCAACTTGTTTTTTGGCATTAATTCCATTGT TTCCCTGTCAGTGGTATACTTTCTTTCCAAGGAAAAGCCTAATGATCCGACTTTAGAACTTATTTCTGAA ACCCTCAAGCGCATTTTCCTGATTTTCCCACAATTCTGTTTTGGCTACGGTTTGATTGAACTTTCTCAAC AACAGTCGGTCCTAGACTTCTTAAAAGCATATGGAGTGGAATACCCAAATGAAACCTTTGAGATGAATAA ACTAGGTGCAATGTTTGTGGCTTTGGTTTCTCAGGGCACCATGTTTTTTTCCTTGCGACTCTTAATCAAC GAATCCCTGATAAAGAAACTCAGGCTTTTCTTCAGAAAATTTAATTCTTCACATGTAAGGGAGACAATAG ATGAGGATGAAGATGTGCGGGCTGAGAGATTAAGAGTTGAGAGTGGTGCAGCTGAATTTGACTTGGTCCA ACTTTATTGTCTCACAAAGACCTACCAACTTATCCACAAAAAGATTATAGCTGTAAACAACATCAGCATT GGGATACCTGCTGGAGAGTGTTTTGGGCTTCTTGGAGTGAATGGAGCAGGAAAGACCACTATATTCAAGA TGCTGACAGGAGACATCATTCCTTCAAGTGGAAACATTCTGATCAGAAATAAGACCGGATCTCTGGGTCA CGTTGATTCTCACAGCTCATTAGTTGGCTACTGTCCTCAGGAAGATGCCTTAGATGACCTGGTAACTGTG GAAGAACATTTGTATTTCTATGCCAGGGTACATGGAATTCCAGAAAAGGATATTAAAGAAACTGTTCATA AACTCCTTAGGAGACTTCACCTGATGCCCTTCAAGGACAGAGCTACCTCTATGTGCAGTTATGGCACAAA AAGAAAATTATCCACTGCACTGGCCTTGATAGGGAAACCTTCCATTCTACTGCTGGATGAGCCGAGCTCT GGCATGGATCCGAAGTCGAAACGGCACCTCTGGAAGATCATTTCAGAAGAAGTACAGAACAAATGTTCCG TCATCCTCACATCTCACAGCATGGAAGAATGTGAAGCTCTCTGTACCAGGTTGGCCATTATGGTGAATGG AAAGTTTCAATGTATTGGATCTTTGCAGCACATAAAGAGCAGGTTTGGACGAGGATTTACTGTCAAAGTT CACTTGAAGAATAACAAAGTGACCATGGAGACCCTCACAAAGTTCATGCAGCTGCACTTTCCAAAAACAT ACTTAAAAGATCAGCACCTCAGCATGCTAGAGTATCATGTACCAGTCACAGCAGGAGGAGTCGCAAACAT TTTTGATCTGCTGGAAACCAACAAGACTGCTTTAAATATTACAAATTTCTTAGTGAGTCAGACCACTCTG GAAGAGGTTTTCATCAACTTTGCCAAAGACCAGAAGTCCTATGAAACTGCTGATACCAGCAGCCAAGGTT CCACTATAAGTGTTGACTCACAAGATGACCAGATGGAGTCTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_015657 |
ORF Size | 6834 bp |
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). |
OTI Annotation | This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA. |
Reference Data | |
RefSeq | NM_015657.3, NP_056472.2 |
RefSeq Size | 8097 |
RefSeq ORF | 6834 |
Locus ID | 26154 |
Protein Families | Druggable Genome, Transmembrane |
Protein Pathways | ABC transporters |
Gene Summary | The membrane-associated protein encoded by this gene is a member of the superfamily of ATP-binding cassette (ABC) transporters. ABC proteins transport various molecules across extra- and intracellular membranes. ABC genes are divided into seven distinct subfamilies (ABC1, MDR/TAP, MRP, ALD, OABP, GCN20, and White). This encoded protein is a member of the ABC1 subfamily, which is the only major ABC subfamily found exclusively in multicellular eukaryotes. Alternative splicing of this gene results in multiple transcript variants. [provided by RefSeq, Jul 2008] Transcript Variant: This variant (2) contains a distinct 5' UTR and 5' coding region, compared to transcript variant 1. This results in a protein (isoform b) containing a shorter and distinct N-terminus, compared to isoform a. |
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