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RAS and RHO families of GTPases directly regulate distinct phosphoinositide 3-kinase isoforms

机译:GTPases的RAS和RHO家族直接调节不同的磷酸肌醇3激酶同工型

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摘要

RAS proteins are important direct activators of p110α, p110γ, and p110δ type I phosphoinositide 3-kinases (PI3Ks), interacting via an amino-terminal RAS-binding domain (RBD). Here, we investigate the regulation of the ubiquitous p110β isoform of PI3K, implicated in G-protein-coupled receptor (GPCR) signaling, PTEN-loss-driven cancers, and thrombocyte function. Unexpectedly, RAS is unable to interact with p110β, but instead RAC1 and CDC42 from the RHO subfamily of small GTPases bind and activate p110β via its RBD. In fibroblasts, GPCRs couple to PI3K through Dock180/Elmo1-mediated RAC activation and subsequent interaction with p110β. Cells from mice carrying mutations in the p110β RBD show reduced PI3K activity and defective chemotaxis, and these mice are resistant to experimental lung fibrosis. These findings revise our understanding of the regulation of type I PI3K by showing that both RAS and RHO family GTPases directly regulate distinct ubiquitous PI3K isoforms and that RAC activates p110β downstream of GPCRs.
机译:RAS蛋白是p110α,p110γ和p110δI型磷酸肌醇3激酶(PI3Ks)的重要直接激活剂,它们通过氨基末端RAS结合域(RBD)相互作用。在这里,我们研究PI3K的普遍存在的p110β亚型的调节,牵涉到G蛋白偶联受体(GPCR)信号传导,PTEN丢失驱动的癌症和血小板功能。出乎意料的是,RAS无法与p110β相互作用,而是来自小GTPases的RHO亚家族的RAC1和CDC42通过其RBD结合并激活p110β。在成纤维细胞中,GPCR通过Dock180 / Elmo1介导的RAC激活以及随后与p110β的相互作用偶联至PI3K。来自在p110βRBD中带有突变的小鼠的细胞显示出降低的PI3K活性和有缺陷的趋化性,这些小鼠对实验性肺纤维化具有抵抗力。这些发现通过证明RAS和RHO家族GTPases都直接调节不同的泛在PI3K亚型,而RAC激活了GPCR下游的p110β,从而改变了我们对I型PI3K调控的理解。

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