Human Gene AGTRAP (ENST00000314340.10) from GENCODE V44
Description: Homo sapiens angiotensin II receptor associated protein (AGTRAP), transcript variant 1, mRNA. (from RefSeq NM_020350) RefSeq Summary (NM_020350): This gene encodes a transmembrane protein localized to the plasma membrane and perinuclear vesicular structures. The gene product interacts with the angiotensin II type I receptor and negatively regulates angiotensin II signaling. Alternative splicing of this gene generates multiple transcript variants encoding different isoforms. [provided by RefSeq, Jul 2008]. Gencode Transcript: ENST00000314340.10 Gencode Gene: ENSG00000177674.16 Transcript (Including UTRs) Position: hg38 chr1:11,736,136-11,750,769 Size: 14,634 Total Exon Count: 5 Strand: + Coding Region Position: hg38 chr1:11,736,209-11,750,192 Size: 13,984 Coding Exon Count: 5
ID:ATRAP_HUMAN DESCRIPTION: RecName: Full=Type-1 angiotensin II receptor-associated protein; AltName: Full=AT1 receptor-associated protein; FUNCTION: Appears to be a negative regulator of type-1 angiotensin II receptor-mediated signaling by regulating receptor internalisation as well as mechanism of receptor desensitization such as phosphorylation. Induces also a decrease in cell proliferation and angiotensin II-stimulated transcriptional activity. SUBUNIT: Interacts with GNB2L1/RACK1, and with the C-terminal region of AGTR1. INTERACTION: Q96AL5:PBX3; NbExp=3; IntAct=EBI-741181, EBI-741171; Q9UKF7:PITPNC1; NbExp=3; IntAct=EBI-741181, EBI-749241; SUBCELLULAR LOCATION: Endoplasmic reticulum membrane; Multi-pass membrane protein. Golgi apparatus membrane; Multi-pass membrane protein. Cytoplasmic vesicle membrane; Multi-pass membrane protein. Note=Present in perinuclear vesicular membranes, Endoplasmic reticulum, Golgi and endocytic vesicles. TISSUE SPECIFICITY: Ubiquitous but more abundant in kidney, heart, pancreas and thyroid. SEQUENCE CAUTION: Sequence=CAI15876.1; Type=Erroneous gene model prediction; WEB RESOURCE: Name=SeattleSNPs; URL="http://pga.gs.washington.edu/data/agtrap/";
The RNAfold program from the Vienna RNA Package is used to perform the secondary structure predictions and folding calculations. The estimated folding energy is in kcal/mol. The more negative the energy, the more secondary structure the RNA is likely to have.
Pfam Domains: PF06396 - Angiotensin II, type I receptor-associated protein (AGTRAP)
ModBase Predicted Comparative 3D Structure on Q6RW13
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Orthologous Genes in Other Species
Orthologies between human, mouse, and rat are computed by taking the best BLASTP hit, and filtering out non-syntenic hits. For more distant species reciprocal-best BLASTP hits are used. Note that the absence of an ortholog in the table below may reflect incomplete annotations in the other species rather than a true absence of the orthologous gene.
AK290042 - Homo sapiens cDNA FLJ75423 complete cds, highly similar to Homo sapiens angiotensin II receptor-associated protein (AGTRAP), mRNA. BC017328 - Homo sapiens angiotensin II receptor-associated protein, mRNA (cDNA clone MGC:29646 IMAGE:4546585), complete cds. AF312374 - Homo sapiens AGTRAP protein mRNA, complete cds. E09415 - cDNA encoding a polypeptide obtained from human gliablastoma cells. BC011946 - Homo sapiens cDNA clone IMAGE:3857985. JD422171 - Sequence 403195 from Patent EP1572962. KJ899301 - Synthetic construct Homo sapiens clone ccsbBroadEn_08695 AGTRAP gene, encodes complete protein. AB528670 - Synthetic construct DNA, clone: pF1KB6809, Homo sapiens AGTRAP gene for angiotensin II receptor-associated protein, without stop codon, in Flexi system. DQ892619 - Synthetic construct clone IMAGE:100005249; FLH188371.01X; RZPDo839B0873D angiotensin II receptor-associated protein (AGTRAP) gene, encodes complete protein. DQ895859 - Synthetic construct Homo sapiens clone IMAGE:100010319; FLH188367.01L; RZPDo839B0863D angiotensin II receptor-associated protein (AGTRAP) gene, encodes complete protein. AF165187 - Homo sapiens ATRAP mRNA, complete cds. E09414 - cDNA encoding a polypeptide obtained from human gliablastoma cells. JD384878 - Sequence 365902 from Patent EP1572962. JD308068 - Sequence 289092 from Patent EP1572962. JD108561 - Sequence 89585 from Patent EP1572962. JD274753 - Sequence 255777 from Patent EP1572962. JD292280 - Sequence 273304 from Patent EP1572962. JD158671 - Sequence 139695 from Patent EP1572962. JD521584 - Sequence 502608 from Patent EP1572962. JD289873 - Sequence 270897 from Patent EP1572962. JD486986 - Sequence 468010 from Patent EP1572962. JD146271 - Sequence 127295 from Patent EP1572962. JD449352 - Sequence 430376 from Patent EP1572962. JD218386 - Sequence 199410 from Patent EP1572962. JD344358 - Sequence 325382 from Patent EP1572962. JD162137 - Sequence 143161 from Patent EP1572962. JD364105 - Sequence 345129 from Patent EP1572962. JD096856 - Sequence 77880 from Patent EP1572962. JD460281 - Sequence 441305 from Patent EP1572962.
Biochemical and Signaling Pathways
Reactome (by CSHL, EBI, and GO)
Protein Q6RW13 (Reactome details) participates in the following event(s):
R-HSA-6802927 BRAF and RAF fusion mutant dimers are phosphorylated R-HSA-6802934 p-BRAF and RAF fusion dimers bind MAP2Ks and MAPKs R-HSA-6802932 Dissociation of BRAF/RAF fusion complex R-HSA-6802933 p-BRAF and RAF fusion dimers phosphorylate MAP2Ks R-HSA-6802935 MAPKs are phosphorylated downstream of BRAF and RAF fusion dimers R-HSA-6802952 Signaling by BRAF and RAF fusions R-HSA-6802957 Oncogenic MAPK signaling R-HSA-5663202 Diseases of signal transduction R-HSA-1643685 Disease