ADAR — Adenosine deaminase RNA specific
ADAR belongs to a gene co-expression module in 6 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.
ADAR's module in each cell type
| Cell type | Module | Shares the module with | |
|---|---|---|---|
| CD8⁺ T cells | Interferon-stimulated Genes Inflammation | GBP1, OAS2, PARP14, PARP9, RNF213, SAMD9, SAMD9L, SP110 +3 more | View in SCUBA |
| Endothelial | Type I Interferon Response Inflammation | DDX60, DTX3L, IFIH1, LAP3, OAS2, ODF3B, PARP9, SLC15A3 +3 more | View in SCUBA |
| Gamma-delta T cells | Hippo Pathway Signaling TCR Signaling | ARL8B, BAZ2A, CASC3, CCDC85C, CCNK, CDC73, CDK12, CSDE1 +24 more | |
| Lymphatic endothelial | Antigen Presentation IFN Inflammation | GPRC5B, HLA-F, KTN1, PARP14, PTTG1IP, SCARB2, TAPBP, TMEM123 +2 more | View in SCUBA |
| Macrophages | Antiviral ISG Response Antiviral | APOL6, ARID5A, CLEC7A, DDX60, DTX3L, EIF2AK2, ERICH1, IFIH1 +29 more | View in SCUBA |
| Mucosal-associated invariant T cell | Chromatin & Splicing DNA/chromatin regulation | ACIN1, API5, BAZ2A, CDC73, CDK12, COPA, FUBP1, KAT7 +11 more |
About the gene
| Synonyms | ADAR1, DRADA, G1P1, IFI4 |
|---|---|
| Chromosome | 1: 154581695-154628013 |
| Predicted location | Intracellular |
| Essential gene | Yes |
| Protein class | Disease related genes, Enzymes, Essential proteins, Human disease related genes, Plasma proteins, Potential drug targets, Predicted intracellular proteins |
| Molecular function | DNA-binding, Hydrolase, RNA-binding |
| Biological process | Antiviral defense, Immunity, Innate immunity, mRNA processing, RNA-mediated gene silencing |
Function
Catalyzes the hydrolytic deamination of adenosine to inosine in double-stranded RNA (dsRNA) referred to as A-to-I RNA editing. This may affect gene expression and function in a number of ways that include mRNA translation by changing codons and hence the amino acid sequence of proteins since the translational machinery read the inosine as a guanosine; pre-mRNA splicing by altering splice site recognition sequences; RNA stability by changing sequences involved in nuclease recognition; genetic stability in the case of RNA virus genomes by changing sequences during viral RNA replication; and RNA structure- dependent activities such as microRNA production or targeting or protein-RNA interactions. Can edit both viral and cellular RNAs and can edit RNAs at multiple sites (hyper-editing) or at specific sites (site- specific editing). Its cellular RNA substrates include: bladder cancer- associated protein (BLCAP), neurotransmitter receptors for glutamate (GRIA2) and serotonin (HTR2C) and GABA receptor (GABRA3). Site-specific RNA editing of transcripts encoding these proteins results in amino acid substitutions which consequently alters their functional activities. Exhibits low-level editing at the GRIA2 Q/R site, but edits efficiently at the R/G site and HOTSPOT1. Its viral RNA substrates include: hepatitis C virus (HCV), vesicular stomatitis virus (VSV), measles virus (MV), hepatitis delta virus (HDV), and human immunodeficiency virus type 1 (HIV-1). Exhibits either a proviral (HDV, MV, VSV and HIV-1) or an antiviral effect (HCV) and this can be editing-dependent (HDV and HCV), editing-independent (VSV and MV) or both (HIV-1). Impairs HCV replication via RNA editing at multiple sites. Enhances the replication of MV, VSV and HIV-1 through an editing-independent mechanism via suppression of EIF2AK2/PKR activation and function. Stimulates both the release and infectivity of HIV-1 viral particles by an editing-dependent mechanism where it associates with viral RNAs and edits adenosines in the 5'UTR and the Rev and Tat coding sequence. Can enhance viral replication of HDV via A-to-I editing at a site designated as amber/W, thereby changing an UAG amber stop codon to an UIG tryptophan (W) codon that permits synthesis of the large delta antigen (L-HDAg) which has a key role in the assembly of viral particles. However, high levels of ADAR1 inhibit HDV replication.
Human Protein Atlas · Open Targets · UniProt
Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.