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首页> 外文期刊>Cellular Signalling >Activation of PI3K/Akt signaling by n-terminal SH2 domain mutants of the p85α regulatory subunit of PI3K is enhanced by deletion of its c-terminal SH2 domain
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Activation of PI3K/Akt signaling by n-terminal SH2 domain mutants of the p85α regulatory subunit of PI3K is enhanced by deletion of its c-terminal SH2 domain

机译:PI3Kp85α调节亚基的n末端SH2结构域突变体对PI3K / Akt信号的激活通过其c末端SH2结构域的缺失而增强

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摘要

The phosphoinositide 3-kinase (PI3K) is frequently activated in human cancer cells due to gain of function mutations in the catalytic (p110) and the regulatory (p85) subunits. The regulatory subunit consists of an SH3 domain and two SH2 domains. An oncogenic form of p85α named p65 lacking the c-terminal SH2 domain (cSH2) has been cloned from an irradiation-induced murine thymic lymphoma and transgenic mice expressing p65 in T lymphocytes develop a lymphoproliferative disorder. We have recently detected a c-terminal truncated form of p85α named p76α in a human lymphoma cell line lacking most of the cSH2 domain due to a frame shift mutation. Here, we report that the deletion of the cSH2 domain enhances the activating effects of the n-terminal SH2 domain (nSH2) mutants K379E and R340E on the PI3K/Akt pathway and micro tumor formation in a focus assay. Further analysis revealed that this transforming effect is mediated by activation of the catalytic PI3K isoform p110α and downstream signaling through mTOR. Our data further support a mechanistic model in which mutations of the cSH2 domain of p85α can abrogate its negative regulatory function on PI3K activity via the nSH2 domain of p85α.
机译:磷酸肌醇3-激酶(PI3K)在人癌细胞中经常被激活,这是由于催化亚基(p110)和调节亚基(p85)的功能突变获得的。调节亚基由一个SH3结构域和两个SH2结构域组成。已经从辐射诱导的鼠胸腺淋巴瘤中克隆了一种缺少c末端SH2结构域(cSH2)的致癌形式的p85α,称为p65,并且在T淋巴细胞中表达p65的转基因小鼠会发生淋巴增生性疾病。我们最近在由于移码突变而缺乏大部分cSH2结构域的人类淋巴瘤细胞系中检测到了p85α的c末端截短形式,称为p76α。在这里,我们报告的cSH2域的删除增强了PI端K3K / Akt途径的n末端SH2域(nSH2)突变体K379E和R340E的激活作用,并在焦点检测中形成了微肿瘤。进一步的分析表明,这种转化作用是通过催化PI3K同工型p110α的激活和通过mTOR的下游信号传导来介导的。我们的数据进一步支持了一种机械模型,其中p85α的cSH2结构域的突变可以通过p85α的nSH2结构域消除其对PI3K活性的负调节功能。

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