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Ral GTP酶参与v-Src诱导的磷脂酶D激活。

Involvement of Ral GTPase in v-Src-induced phospholipase D activation.

作者信息

Jiang H, Luo J Q, Urano T, Frankel P, Lu Z, Foster D A, Feig L A

机构信息

Institute for Biomolecular Structure and Function, City University of New York, New York 10021, USA.

出版信息

Nature. 1995 Nov 23;378(6555):409-12. doi: 10.1038/378409a0.

Abstract

An early response to the tyrosine kinase activity of v-Src is an increase in phospholipase D (PLD) activity, which leads to the generation of biologically active lipid second messengers, including phosphatidic acid, lysophosphatidic acid and diacylglycerol. We have recently demonstrated that v-Src-induced PLD activity is mediated by Ras, although Ras involvement was indirect, requiring a cytosolic factor for PLD activation. Ras interacts with and activates Ral-GDS, the exchange factor responsible for the activation of Ral GTPases. Here we report that this newly identified Ras/Ral signalling pathway mediates PLD activation by v-Src. PLD activity could be precipitated from v-Src-transformed cell lysates with immobilized RalA protein and with an anti-Ral antibody. A mutation to the region of RalA analogous to the 'effector domain' of Ras did not reduce the ability of RalA to complex with PLD, although deletion of a Ral-specific amino-terminal region did. Overexpression of RalA potentiated PLD activation by v-Src, and expression of dominant negative RalA mutants inhibited both v-Src- and v-Ras-induced PLD activity. Thus RalA is involved in the tyrosine kinase activation of PLD through its unique N terminus, and that PLD is a downstream target of a Ras/Ral GTPase cascade.

摘要

对v-Src酪氨酸激酶活性的早期反应是磷脂酶D(PLD)活性增加,这会导致生物活性脂质第二信使的产生,包括磷脂酸、溶血磷脂酸和二酰基甘油。我们最近证明,v-Src诱导的PLD活性由Ras介导,尽管Ras的参与是间接的,需要一种胞质因子来激活PLD。Ras与Ral-GDS相互作用并激活Ral-GDS,Ral-GDS是负责激活Ral GTP酶的交换因子。在此我们报告,这条新发现的Ras/Ral信号通路介导v-Src对PLD的激活。PLD活性可以用固定化的RalA蛋白和抗Ral抗体从v-Src转化的细胞裂解物中沉淀出来。RalA中与Ras的“效应结构域”类似的区域发生突变,并不降低RalA与PLD形成复合物的能力,不过缺失Ral特异性的氨基末端区域则会降低这种能力。RalA的过表达增强了v-Src对PLD的激活,而显性负性RalA突变体的表达则抑制了v-Src和v-Ras诱导的PLD活性。因此,RalA通过其独特的氨基末端参与PLD的酪氨酸激酶激活,并且PLD是Ras/Ral GTP酶级联反应的下游靶点。

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