Abca7 (NM_013850) Mouse Untagged Clone
CAT#: MC225204
Abca7 (untagged) - Mouse ATP-binding cassette, sub-family A (ABC1), member 7 (Abca7), (10ug)
"NM_013850" in other vectors (2)
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Specifications
Product Data | |
Type | Mouse Untagged Clone |
Tag | Tag Free |
Symbol | Abca7 |
Synonyms | Abc51; ABCX |
Vector | pCMV6-Entry |
E. coli Selection | Kanamycin (25 ug/mL) |
Mammalian Cell Selection | Neomycin |
Sequence Data |
>MC225204 representing NM_013850
Red=Cloning site Blue=ORF Orange=Stop codon TTTTGTAATACGACTCACTATAGGGCGGCCGGGAATTCGTCGACTGGATCCGGTACCGAGGAGATCTGCC GCCGCGATCGCC ATGGCCTTAGGCACACAGCTGATGCTTCTGCTGTGGAAAAATTACACCTATCGACGGAGACAACCGATCC AACTACTAGTGGAGTTGCTTTGGCCCCTCTTCCTCTTCTTCATCCTAGTGGCTGTCCGTCACTCCCACCC CCCTCTGGAGCATCACGAATGCCACTTTCCAAACAAGCCATTACCATCGGCGGGCACGGTGCCCTGGCTG CAGGGCCTTGTCTGCAACGTAAACAACTCCTGCTTCCAGCACCCAACGCCTGGCGAGAAGCCTGGGGTCC TGAGTAACTTTAAGGATTCCTTGATCTCGAGGCTCCTCGCTGATACCCGCACAGTGCTCGGGGGCCACAG CATCCAGGACATGCTGGATGCCCTGGGGAAACTGATCCCCGTGCTCAGGGCAGTTGGAGGTGGAGCACGA CCACAGGAGAGTGACCAGCCGACCAGTCAAGGGTCAGTGACTAAGCTTCTGGAGAAGATCCTGCAAAGGG CATCCCTGGATCCTGTGCTGGGTCAAGCCCAGGATTCTATGAGAAAGTTCTCAGATGCTATCAGGGATCT TGCCCAGGAGCTCCTGACACTGCCCAGCCTGATGGAGCTCCGAGCTTTGCTGCGGAGGCCCCGAGGGTCA GCTGGTTCTCTGGAGCTGGTTTCGGAGGCCCTCTGCAGTACCAAGGGACCCAGCAGTCCAGGGGGCCTGT CCCTCAATTGGTACGAAGCCAACCAGCTTAATGAGTTCATGGGGCCAGAGGTGGCCCCTGCCCTGCCTGA CAACAGTCTCAGCCCTGCCTGCTCTGAGTTTGTGGGGACACTGGATGACCACCCTGTGTCTCGGCTGCTC TGGAGGCGCCTGAAGCCATTGATCCTCGGGAAAATTCTCTTTGCACCTGACACAAACTTCACTCGGAAGC TCATGGCTCAGGTGAACCAGACCTTCGAGGAGCTGGCTCTGTTGAGGGACCTACACGAACTCTGGGGGGT GCTGGGACCCCAGATCTTCAACTTCATGAATGACAGTACCAACGTGGCCATGCTTCAGAGGCTTCTGGAT GTGGGGGGCACAGGGCAGAGGCAGCAGACACCCAGAGCCCAGAAGAAGTTGGAGGCTATCAAAGACTTTC TGGATCCTAGTAGGGGTGGCTACAGCTGGCGGGAGGCCCACGCAGATATGGGACGCCTGGCTGGAATCCT AGGACAAATGATGGAGTGTGTGTCCCTGGACAAGCTGGAGGCTGTGCCCTCAGAGGAAGCTCTTGTGTCC CGTGCCCTGGAGCTGCTGGGTGAGCGCCGCCTCTGGGCAGGCATCGTGTTCCTGAGCCCAGAGCATCCTC TGGACCCATCCGAACTGTCATCTCCAGCCCTGAGTCCTGGCCACCTACGATTCAAGATTCGAATGGATAT CGATGATGTCACAAGGACCAATAAGATCAGGGACAAGTTTTGGGACCCAGGTCCGTCAGCAGATCCTTTC ATGGACCTTCGGTATGTGTGGGGAGGCTTCGTGTACCTGCAGGACCTGCTGGAGCAGGCAGCTGTGCGAG TGCTCGGTGGCGGGAACTCCCGCACAGGTCTCTACCTGCAGCAGATGCCACACCCCTGCTACGTGGATGA TGTGTTCCTGCGGGTGCTGAGCCGGTCTCTGCCTCTGTTTCTGACTCTGGCCTGGATTTATTCGGTGGCG CTCACTGTGAAGGCCGTGGTGCGTGAGAAAGAGACACGGCTGCGAGAAACCATGCGTGCGATGGGGCTGA GCCGCGCGGTGCTCTGGCTTGGTTGGTTCCTCAGCTGCCTGGGACCCTTCCTGGTCAGCGCTGCGTTGCT GGTATTAGTGCTTAAGCTAGGGAACATCCTTCCTTACAGCCACCCGGTTGTAATCTTCCTTTTCTTGGCG GCCTTCGCGGTGGCCACCGTCGCTCAGAGTTTTCTGCTCAGCGCCTTCTTCTCCAGGGCCAACCTGGCAG CAGCCTGCGGGGGGCTCGCCTATTTTGCGCTCTATCTGCCCTACGTACTGTGTGTGGCCTGGCGCGAGCG CCTGCACCTGGGCGGACTCTTAGCTGCGAGCCTGCTGTCCCCTGTAGCCTTTGGCTTTGGATGCGAAAGC CTGGCGCTACTAGAGGAGCAGGGAGACGGGGCTCAGTGGCACAATTTGGGCACAGGCCCCGCGGAGGACG TCTTCAGCCTGGCCCAGGTGTCTGCCTTCCTGTTGCTTGATGCCGTCATCTACGGCCTTGCCCTCTGGTA CCTAGAGGCTGTGTGCCCAGGCCAGTATGGAATCCCTGAACCATGGAATTTCCCTTTTCGGAGGAGCTAC TGGTGTGGACCTGGGCCTCCCAAGAGTTCTGTCTTGGCCCCTGCCCCACAAGATCCCAAGGTTCTGGTGG AAGAGCCACCCCTTGGCCTGGTTCCTGGTGTCTCCATTCGAGGCCTGAAGAAACATTTTCGTGGCTGTCC GCAGCCAGCCCTGCAAGGACTCAACCTTGACTTCTACGAAGGCCACATCACTGCCTTTTTGGGTCACAAC GGGGCTGGCAAGACAACCACACTGTCCATTTTGAGTGGTCTCTTCCCACCCAGTAGTGGCTCGGCCTCCA TCCTGGGCCATGATGTACAAACCAACATGGCAGCCATCCGGCCCCACCTGGGCATCTGCCCGCAGTACAA TGTGCTGTTTGATATGCTGACAGTGGAAGAACATGTTTGGTTCTATGGCCGTTTGAAAGGCGTGAGTGCA GCCGCCATGGGCCCCGAGCGGGAACGTCTGATACGGGATGTGGGGCTTACCCTCAAGCGGGACACACAGA CACGCCACCTCTCTGGTGGAATGCAGAGAAAACTTTCTGTGGCCATTGCCTTTGTGGGTGGCTCTCGTGT GGTCATCATGGACGAGCCCACTGCTGGTGTGGACCCCGCTTCCCGCCGTGGCATTTGGGAATTGCTACTT AAGTACAGAGAAGGTCGGACACTGATTCTCTCCACTCACCACCTGGATGAGGCAGAGCTCTTGGGAGATC GCGTGGCCATGGTGGCAGGTGGCTCTTTGTGCTGCTGTGGGTCCCCGCTTTTCTTGCGCCGACACTTGGG CTGCGGTTACTACCTGACCCTGGTGAAGAGTTCTCAGTCCCTCGTCACCCATGATGCTAAGGGAGACAGT GAGGACCCCAGACGGGAAAAGAAGTCAGATGGCAATGGCAGGACGTCAGACACAGCGTTCACACGAGGAA CCTCAGACAAGAGCAACCAGGCCCCGGCTCCTGGCGCCGTTCCCATCACCCCAAGCACAGCCCGGATACT AGAGCTAGTGCAGCAGCATGTGCCTGGAGCACAACTCGTGGAGGACCTGCCCCATGAGCTTCTGCTTGTG CTACCCTATGCGGGGGCCCTGGATGGCAGCTTCGCCATGGTCTTCCAGGAGCTGGATCAGCAGCTGGAGC TCCTGGGTCTCACAGGCTACGGGATCTCGGACACCAACCTGGAGGAGATCTTCCTAAAGGTGGTGGAGGA TGCGCACAGAGAAGGTGGGGACTCTAGACCGCAGCTGCACCTTCGCACATGCACTCCACAGCCCCCCACA GGGCCAGAGGCATCAGTTCTGGAGAATGGGGAGCTGGCCCCACAGGGCTTGGCACCCAACGCTGCCCAAG TGCAAGGCTGGACACTTACCTGTCAACAGCTCCGGGCTCTGCTCCACAAGCGTTTTCTGCTTGCTCGCCG CAGCCGCCGGGGCCTGTTTGCACAGGTTGTGTTGCCTGCCCTCTTTGTGGGCCTGGCCCTGTTCTTCAGC CTCATTGTGCCTCCTTTTGGCCAGTACCCACCCCTGCAGCTCAGCCCTGCTATGTATGGCCCTCAGGTCT CGTTCTTCAGTGAGGATGCCCCTGGGGACCCCAACCGGATGAAGCTGCTGGAGGCTCTGCTAGGGGAGGC TGGGCTGCAGGAACCCAGTATGCAGGACAAAGATGCCAGGGGATCTGAGTGTACACACTCCCTAGCTTGC TACTTCACGGTCCCTGAGGTCCCTCCTGATGTGGCCAGCATCCTGGCCAGTGGCAACTGGACGCCAGAAT CTCCATCCCCAGCTTGCCAATGCAGTCAGCCTGGAGCCCGCCGCCTGTTGCCAGATTGCCCGGCTGGAGC TGGGGGTCCACCACCCCCCCAGGCTGTGGCTGGCTTGGGGGAGGTGGTCCAGAACCTCACTGGCCGAAAT GTGTCTGACTTTTTGGTGAAGACATACCCCAGCCTGGTGCGCCGAGGCCTAAAGACCAAGAAGTGGGTGG ATGAGGTCAGATATGGGGGCTTCTCCCTGGGAGGCCGAGATCCAGACCTGCCCACAGGGCATGAGGTGGT CCGCACATTGGCAGAGATTCGGGCACTGCTGAGCCCCCAACCTGGGAATGCGCTAGACCGTATCCTGAAC AACCTCACTCAGTGGGCCCTTGGCCTTGATGCTCGGAACAGCCTCAAGATCTGGTTCAACAACAAGGGCT GGCATGCCATGGTGGCCTTTGTGAACCGAGCCAACAATGGACTCCTACATGCCCTCCTACCATCTGGTCC AGTCCGCCATGCCCACAGCATCACTACACTCAACCATCCTTTGAACTTGACCAAGGAGCAGCTATCTGAA GCTACACTGATAGCCTCCTCTGTGGATGTCCTTGTCTCCATCTGTGTGGTCTTCGCCATGTCATTTGTCC CAGCCAGCTTTACCCTGGTCCTCATAGAGGAACGCATCACCAGAGCCAAGCATCTGCAGCTGGTCAGCGG CCTGCCCCAAACCCTCTATTGGCTTGGCAACTTCCTCTGGGACATGTGTAACTACTTGGTGGCAGTGTGC ATAGTGGTGTTCATCTTCCTAGCCTTTCAGCAGAGAGCCTATGTGGCCCCAGAGAACCTGCCTGCTCTCT TACTCTTGCTTCTGCTGTATGGGTGGTCTATCACACCACTCATGTACCCAGCCTCCTTCTTCTTCTCAGT GCCCAGCACGGCCTATGTGGTGCTCACCTGCATCAACCTCTTCATTGGCATCAATAGCAGCATGGCCACC TTCGTGCTAGAACTGCTTTCAGATCAGAACCTGCAAGAAGTGAGCCGGATCCTGAAACAAGTGTTTCTTA TTTTCCCCCACTTTTGCCTTGGCCGAGGGCTCATTGACATGGTTCGGAACCAGGCCATGGCAGATGCCTT TGAGCGCTTAGGAGACAAGCAATTTCAGTCACCCCTACGCTGGGACATCATTGGCAAGAACCTCCTGGCC ATGATGGCCCAGGGACCTCTGTTCCTCCTCATCACACTCCTGCTCCAACACCGCAACCGTCTCCTGCCAC AATCAAAACCAAGACTGCTGCCGCCCCTGGGGGAGGAGGATGAGGATGTGGCTCAAGAGCGTGAGCGGGT GACCAAGGGGGCTACCCAGGGGGATGTGCTAGTCCTCAGGGACTTGACCAAGGTTTACCGTGGGCAGAGG AACCCAGCTGTGGATCGCCTGTGCTTAGGGATCCCCCCTGGGGAGTGTTTCGGGCTGCTGGGTGTCAACG GGGCAGGGAAGACATCCACCTTCCGCATGGTGACAGGGGACACACTGCCCAGCAGTGGTGAAGCAGTACT GGCAGGCCACAACGTGGCCCAGGAGCGGTCTGCCGCACACCGCAGCATGGGCTACTGTCCCCAGTCTGAT GCCATCTTCGACCTGCTGACCGGCCGGGAACATCTGGAACTGTTTGCTCGCCTGCGCGGGGTGCCCGAGG CCCAAGTTGCCCAGACTGCGCTCTCTGGCCTGGTGCGCCTGGGCCTTCCTAGCTATGCAGACCGACCCGC GGGTACCTACAGCGGAGGCAACAAACGGAAGCTGGCGACAGCCTTAGCTCTGGTTGGTGACCCAGCTGTG GTCTTTCTGGACGAGCCCACCACAGGCATGGACCCAAGTGCGCGGCGATTTCTTTGGAACAGCTTGCTGT CCGTGGTGCGCGAGGGCCGCTCCGTAGTGCTCACGTCGCACAGCATGGAGGAGTGCGAAGCGCTCTGCAC GCGCCTGGCCATCATGGTGAACGGGCGGTTCCGCTGTCTGGGAAGCTCTCAGCATCTCAAAGGCAGGTTC GGGGCTGGCCACACACTGACTCTAAGGGTCCCACCGGACCAGCCTGAGCCGGCGATAGCCTTCATCAGGA TCACATTCCCTGGGGCTGAACTCCGGGAGGTGCACGGCAGCCGTCTGCGCTTCCAACTGCCACCGGGGGG CAGATGCACCCTGACACGAGTGTTCAGGGAGCTGGCTGCCCAGGGCAGGGCCCACGGTGTGGAGGACTTC TCTGTGAGCCAGACCACTCTGGAGGAGGTGTTCCTATATTTCTCCAAAGACCAAGGGGAAGAGGAAGAGA GCAGTCGGCAGGAGGCTGAAGAAGAGGAGGTTTCCAAACCTGGCCGGCAGCATCCCAAACGTGTCAGCCG ATTCCTGGAAGACCCCAGCTCTGTGGAGACCATGATCTGA ACGCGTACGCGGCCGCTCGAGCAGAAACTCATCTCAGAAGAGGATCTGGCAGCAAATGATATCCTGGATT ACAAGGATGACGACGATAAGGTTTAA |
Restriction Sites | SgfI-MluI |
ACCN | NM_013850 |
ORF Size | 6480 bp |
Insert Size | 6480 |
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_013850.1, NP_038878.1 |
RefSeq Size | 6607 |
RefSeq ORF | 6480 |
Locus ID | 27403 |
Gene Summary | The 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, White). This protein is a member of the ABC1 subfamily. Members of the ABC1 subfamily comprise the only major ABC subfamily found exclusively in multicellular eukaryotes. This protein is widely expressed with highest detection in spleen and hematopoietic tissues. Defects in this gene cause an increase in amyloid-beta deposits in a mouse model of Alzheimer's disease, and a related human protein is thought to play a role in lipid homeostasis in cells of the immune system. [provided by RefSeq, Jan 2017] |
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