ABCC9 (ATP binding cassette subfamily C member 9)
| Gene | |
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Entrez ID
Entrez Gene ID - the GENE ID in NCBI Gene database.
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10060 |
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Gene name
Gene Name - the full gene name approved by the HGNC.
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ATP binding cassette subfamily C member 9 |
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Gene symbol
Gene Symbol - the official gene symbol approved by the HGNC.
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ABCC9 |
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Synonyms (NCBI Gene)
Gene synonyms aliases
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ABC37, ATFB12, CANTU, CMD1O, IDMYS, SUR2 |
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Chromosome
Chromosome number
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12 |
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Chromosome location
Chromosomal Location - indicates the cytogenetic location of the gene or region on the chromosome.
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12p12.1 |
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Summary
Summary of gene provided in NCBI Entrez Gene.
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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 intra-cellular membranes. ABC genes are divided into seven distinct subfamilies (ABC1, M |
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SNPs
SNP information provided by dbSNP.
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miRNA
miRNA information provided by mirtarbase database.
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Gene ontology (GO)
Gene ontology information of associated ontologies with gene provided by GO database.
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Other IDs
Other ids provides unique ids of gene in databases such as OMIM, HGNC, ENSEMBLE.
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| Protein | ||||||||||||||||||||||||||
| UniProt ID | O60706 | |||||||||||||||||||||||||
| Protein name | ATP-binding cassette sub-family C member 9 (Sulfonylurea receptor 2) | |||||||||||||||||||||||||
| Protein function | Subunit of ATP-sensitive potassium channels (KATP). Can form cardiac and smooth muscle-type KATP channels with KCNJ11. KCNJ11 forms the channel pore while ABCC9 is required for activation and regulation (PubMed:9831708). Can form a sulfonylurea- | |||||||||||||||||||||||||
| Family and domains |
Pfam
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| Sequence | ||||||||||||||||||||||||||
| Sequence length | 1549 | |||||||||||||||||||||||||
| Interactions | View interactions | |||||||||||||||||||||||||
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Pathways
Pathway information has different metabolic/signaling pathways associated with genes.
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Associated diseases
Disease associations categorized as Causal (pathogenic variants), Unknown (uncertain genetic evidence), or Text Mining (literature-based associations)
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