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A genome-wide RNAi screen reveals a Trio-regulated Rho GTPase circuitry transducing GPCR-initiated mitogenic signals

机译:基因组RNAi筛网揭示了一种转换GPCR引发的促动信号的三重量rNOGPTP酶电路

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摘要

Activating mutations in GNAQ and GNA11, encoding members of the Gαq family of G protein α subunits, are the driver uveal melanoma oncogenes, while mutations in Gq-linked G proteincoupled receptors (GPCRs) have been identified recently in numerous human malignancies. How Gαq and its coupled receptors transduce mitogenic signals is still unclear, due to the complexity of signaling events perturbed upon Gq activation. Using of a synthetic biology approach and a genome-wide RNAi screen, we found that a highly conserved guanine nucleotide exchange factor, Trio, is essential to activate Rho- and Rac-regulated signaling pathways acting on JNK and p38, thereby transducing proliferative signals from Gαq to the nucleus independently of PLC-β. Indeed, while many biological responses elicited by Gq depend on the transient activation of second messenger system, Gq utilizes a hardwired protein-protein interaction-based signaling circuitry to achieve the sustained stimulation of proliferative pathways, thereby controlling normal and aberrant cell growth.
机译:GNAQ和GNA11(编码G蛋白α亚基Gαq家族成员)的激活突变是葡萄膜黑色素瘤致癌基因,而最近在许多人类恶性肿瘤中发现了与Gq连接的G蛋白偶联受体(GPCR)中的突变。由于Gq激活会干扰信号转导事件的复杂性,因此尚不清楚Gαq及其偶联受体如何转导有丝分裂信号。使用合成生物学方法和全基因组的RNAi筛选,我们发现高度保守的鸟嘌呤核苷酸交换因子Trio对于激活作用于JNK和p38的Rho和Rac调节的信号通路至关重要,从而从Gαq独立于PLC-β到达原子核。确实,尽管Gq引起的许多生物学反应取决于第二信使系统的瞬时激活,但Gq利用基于硬线蛋白质-蛋白质相互作用的信号传导电路来实现对增殖途径的持续刺激,从而控制正常和异常细胞的生长。

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