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PI5P, PP2A and IER3 Regulate PI3K/AKT Signaling

Reactome ID: R-HSA-6811558

中文名称

FGFR2 IIIa TM 信号传导

通路描述

一种截短的 FGFR2 在 Apert 综合征小鼠模型中异常表达,并在体外和体内抑制 FGFR 信号传导。该变体称为 FGFR IIIa TM,源自一个错配转录本,该转录本融合外显子 7 和外显子 10,并逃过了无义介导的降解。FGFR2 IIIa TM 可能通过结合 FGF 配体或在与全长受体在细胞表面形成非功能性异二聚体来抑制信号传导(Wheldon 等,2011)。
英文描述
PI5P, PP2A and IER3 Regulate PI3K/AKT Signaling Phosphatidylinositol-5-phosphate (PI5P) may modulate PI3K/AKT signaling in several ways. PI5P is used as a substrate for production of phosphatidylinositol-4,5-bisphosphate, PI(4,5)P2 (Rameh et al. 1997, Clarke et al. 2008, Clarke et al. 2010, Clarke and Irvine 2013, Clarke et al. 2015), which serves as a substrate for activated PI3K, resulting in the production of PIP3 (Mandelker et al. 2009, Burke et al. 2011). The majority of PI(4,5)P2 in the cell, however, is produced from the phosphatidylinositol-4-phosphate (PI4P) substrate (Zhang et al. 1997, Di Paolo et al. 2002, Oude Weernink et al. 2004, Halstead et al. 2006, Oude Weernink et al. 2007). PIP3 is necessary for the activating phosphorylation of AKT. AKT1 can be deactivated by the protein phosphatase 2A (PP2A) complex that contains a regulatory subunit B56-beta (PPP2R5B) or B56-gamma (PPP2R5C). PI5P inhibits AKT1 dephosphorylation by PP2A through an unknown mechanism (Ramel et al. 2009). Increased PI5P levels correlate with inhibitory phosphorylation(s) of the PP2A complex. MAPK1 (ERK2) and MAPK3 (ERK1) are involved in inhibitory phosphorylation of PP2A, in a process that involves IER3 (IEX-1) (Letourneux et al. 2006, Rocher et al. 2007). It is uncertain, however, whether PI5P is in any way involved in ERK-mediated phosphorylation of PP2A or if it regulates another PP2A kinase.

所含基因

103 个基因