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Structural and mechanistic insights into ras association domains of phospholipase C epsilon

机译:磷脂酶C epsras的ras缔合域的结构和力学见解

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Ras proteins signal to a number of distinct pathways by interacting with diverse effectors. Studies of ras/effect or interactions have focused on three classes, Raf kinases, ral guanylnucleotide-exchange factors, and phosphatidylinositol-3-kinases. Here we describe ras interactions with another effector, the recently identified phospholipase C epsilon (PLC epsilon). We solved structures of PLC epsilon RA domains (RA1 and RA2) by NMR and the structure of the RA2/ras complex by X-ray crystallography. Although the similarity between ubiqultin-like folds of RA1 and RA2 proves that they are homologs, only RA2 can bind ras. Some of the features of the RA2/ras interface are unique to PLC epsilon, while the ability to make contacts with both switch I and II regions of ras is shared only with phosphatidylinositol-3-kinase. Studies of PLC epsilon regulation suggest that, in a cellular context, the RA2 domain, in a mode specific to PLC epsilon, has a role in membrane targeting with further regulatory impact on PLC activity.
机译:Ras蛋白通过与各种效应子相互作用,向多种不同的途径发出信号。 ras /效应或相互作用的研究集中在三类,Raf激酶,Ral胍基核苷酸交换因子和磷脂酰肌醇-3-激酶。在这里,我们描述了ras与另一个效应子,即最近鉴定的磷脂酶C epsilon(PLC epsilon)的相互作用。我们通过NMR解析了PLCεRA域(RA1和RA2)的结构,并通过X射线晶体学解决了RA2 / ras复合物的结构。尽管RA1和RA2的泛素样折叠之间的相似性证明它们是同源物,但只有RA2可以结合ras。 RA2 / ras接口的某些功能是PLC epsilon独有的,而与ras的开关I和II区域进行接触的能力仅与磷脂酰肌醇3-激酶共享。对PLCε调控的研究表明,在细胞环境中,RA2域以PLCε特有的模式在膜靶向中发挥作用,并对PLC活性产生进一步的调控影响。

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