DBI (diazepam binding inhibitor, acyl-CoA binding protein)
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Gene
Gene information from NCBI Gene database.
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| Entrez ID | 1622 |
| Gene name | Diazepam binding inhibitor, acyl-CoA binding protein |
| Gene symbol | DBI |
| Synonyms (NCBI Gene) |
ACBD1ACBPCCK-RPEP
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| Chromosome | 2 |
| Chromosome location | 2q14.2 |
| Summary | This gene encodes diazepam binding inhibitor, a protein that is regulated by hormones and is involved in lipid metabolism and the displacement of beta-carbolines and benzodiazepines, which modulate signal transduction at type A gamma-aminobutyric acid rec |
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miRNA
miRNA information provided by mirtarbase database.
137
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Transcription factors
Transcription factors information provided by TRRUST V2 database.
1
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Gene ontology (GO)
Gene Ontology (GO) annotations describing the biological processes, molecular functions, and cellular components associated with a gene.
19
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Other IDs
Other IDs provides unique identifiers for this gene in OMIM, HGNC, and Ensembl databases.
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Protein
Protein information from UniProt database.
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UniProt ID
Unique identifier for the protein in the UniProt database. Click to view detailed protein information.
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P07108 | ||||||||||
| Protein name | Acyl-CoA-binding protein (ACBP) (Diazepam-binding inhibitor) (DBI) (Endozepine) (EP) | ||||||||||
| Protein function | Binds medium- and long-chain acyl-CoA esters with very high affinity and may function as an intracellular carrier of acyl-CoA esters. It is also able to displace diazepam from the benzodiazepine (BZD) recognition site located on the GABA type A | ||||||||||
| PDB | 2CB8 , 2FJ9 | ||||||||||
| Family and domains |
Pfam
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| Tissue specificity | TISSUE SPECIFICITY: Isoform 1 is ubiquitous, with a moderate expression level. Isoform 2 is ubiquitous with high level in liver and adipose tissue. Isoform 3 is ubiquitous with strong expression in adipose tissue and heart. {ECO:0000269|PubMed:16055366, E | ||||||||||
| Sequence |
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| Sequence length | 87 | ||||||||||
| Interactions | View interactions | ||||||||||
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Pathways
Pathway information has different metabolic/signaling pathways associated with genes.
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