ID/Version |
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Sequence description from provider |
RecName: Full=Rapamycin-insensitive companion of mTOR {ECO:0000305};AltName: Full=AVO3 homolog {ECO:0000303|PubMed:15467718}; Short=mAVO3 {ECO:0000303|PubMed:15467718};AltName: Full=Protein pianissimo; | ||||||||||||||
Provider | SWISS-PROT | ||||||||||||||
Sequence |
Polypeptide
1708
aa
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Source | |||||||||||||||
Annotated genes and markers |
Follow the symbol links to get more information on the GO terms,
expression assays, orthologs, phenotypic alleles, and other information
for the genes or markers below.
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Sequence references in MGI |
J:92575
Okazaki N, et al., Prediction of the coding sequences of mouse homologues of KIAA gene: IV. The complete nucleotide sequences of 500 mouse KIAA-homologous cDNAs identified by screening of terminal sequences of cDNA clones randomly sampled from size-fractionated libraries. DNA Res. 2004 Jun 30;11(3):205-18
J:93907 Jacinto E, et al., Mammalian TOR complex 2 controls the actin cytoskeleton and is rapamycin insensitive. Nat Cell Biol. 2004 Nov;6(11):1122-8 J:99680 The FANTOM Consortium and RIKEN Genome Exploration Research Group and Genome Science Group (Genome Network Project Core Group), The Transcriptional Landscape of the Mammalian Genome. Science. 2005;309(5740):1559-1563 J:104099 Hresko RC, et al., mTOR.RICTOR is the Ser473 kinase for Akt/protein kinase B in 3T3-L1 adipocytes. J Biol Chem. 2005 Dec 9;280(49):40406-16 J:119564 Shiota C, et al., Multiallelic disruption of the rictor gene in mice reveals that mTOR complex 2 is essential for fetal growth and viability. Dev Cell. 2006 Oct;11(4):583-9 J:125618 Jacinto E, et al., SIN1/MIP1 maintains rictor-mTOR complex integrity and regulates Akt phosphorylation and substrate specificity. Cell. 2006 Oct 6;127(1):125-37 J:137592 Guertin DA, et al., Ablation in mice of the mTORC components raptor, rictor, or mLST8 reveals that mTORC2 is required for signaling to Akt-FOXO and PKCalpha, but not S6K1. Dev Cell. 2006 Dec;11(6):859-71 J:193606 Dai N, et al., mTOR complex 2 phosphorylates IMP1 cotranslationally to promote IGF2 production and the proliferation of mouse embryonic fibroblasts. Genes Dev. 2013 Feb 1;27(3):301-12 J:193983 Kim SJ, et al., mTOR complex 2 regulates proper turnover of insulin receptor substrate-1 via the ubiquitin ligase subunit Fbw8. Mol Cell. 2012 Dec 28;48(6):875-87 J:210466 Liu P, et al., Cell-cycle-regulated activation of Akt kinase by phosphorylation at its carboxyl terminus. Nature. 2014 Apr 24;508(7497):541-5 J:252270 Guri Y, et al., mTORC2 Promotes Tumorigenesis via Lipid Synthesis. Cancer Cell. 2017 Dec 11;32(6):807-823.e12 J:292518 Huttlin EL, et al., A tissue-specific atlas of mouse protein phosphorylation and expression. Cell. 2010 Dec 23;143(7):1174-89 J:306498 Wrobel L, et al., mTORC2 Assembly Is Regulated by USP9X-Mediated Deubiquitination of RICTOR. Cell Rep. 2020 Dec 29;33(13):108564 J:338236 Lee D, et al., Transmembrane Inhibitor of RICTOR/mTORC2 in Hematopoietic Progenitors. Stem Cell Reports. 2014 Nov 11;3(5):832-40 J:355636 Baffi TR, et al., mTORC2 controls the activity of PKC and Akt by phosphorylating a conserved TOR interaction motif. Sci Signal. 2021 Apr 13;14(678) |
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO) |
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last database update 03/25/2025 MGI 6.24 |
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