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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Role of the C-terminal basic amino acids and the lipid anchor of the Gγ 2 protein in membrane interactions and cell localization
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Role of the C-terminal basic amino acids and the lipid anchor of the Gγ 2 protein in membrane interactions and cell localization

机译:C-末端碱性氨基酸的作用和Gγ2蛋白在膜相互作用和细胞定位中的脂质锚

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摘要

Abstract Heterotrimeric G proteins are peripheral membrane proteins that frequently localize to the plasma membrane where their presence in molar excess over G protein coupled receptors permits signal amplification. Their distribution is regulated by protein-lipid interactions, which has a clear influence on their activity. Gβγ dimer drives the interaction between G protein heterotrimers with cell membranes. We focused our study on the role of the C-terminal region of the Gγ 2 protein in G protein interactions with cell membranes. The Gγ 2 subunit is modified at cysteine (Cys) 68 by the addition of an isoprenyl lipid, which is followed by the proteolytic removal of the last three residues that leaves an isoprenylated and carboxyl methylated Cys-68 as the terminal amino acid. The role of Cys isoprenylation of the CAAX box has been defined for other proteins, yet the importance of proteolysis and carboxyl methylation of isoprenylated proteins is less clear. Here, we showed that not only geranylgeranylation but also proteolysis and carboxyl methylation are essential for the correct localization of Gγ 2 in the plasma membrane. Moreover, we showed the importance of electrostatic interactions between the inner leaflet of the plasma membrane and the positively charged C-terminal domain of the Gγ 2 subunit (amino acids Arg-62, Lys-64 and Lys-65) as a second signal to reach the plasma membrane. Indeed, single or multiple point mutations at Gγ 2 C-terminal amino acids have a significant effect on Gγ 2 protein-plasma membrane interactions and its localization to charged Ld (liquid disordered) membrane microdomains. This article is part of a Special Issue entitled: Membrane Lipid Therapy: Drugs Targeting Biomembranes edited by Pablo V. Escribá. Highlights ? Gβγ dimers drives the interaction between G protein heterodimers with cell membranes. ? Not only geranylgeranylation but also proteolysis and carboxyl methylation are essential for the localization of Gγ 2 in the plasma membrane. ? We showed the importance of electrostatic interactions between the inner leaflet of the membrane and the C-terminal domain of the Gγ 2 subunit. ]]>
机译:抽象异三聚体G蛋白是外周膜蛋白,其经常定位于质膜,其中其在摩尔过量的G蛋白偶联受体存在允许信号放大。其分布是由蛋白质 - 脂质相互作用,这对他们的活动的明确规定的影响。 Gβγ二聚体驱动器与细胞膜G蛋白异源三聚之间的相互作用。我们关注我们的研究与细胞膜G蛋白相互作用Gγ2蛋白的C端区域的作用。所述Gγ亚基2通过加入异戊二烯脂质,随后是蛋白水解移除的最后三个残基的叶子和isoprenylated羧基甲基化的Cys-68作为末端氨基酸中的半胱氨酸(Cys)68改性。 CAAX盒的半胱氨酸异戊二烯的作用已经为其他蛋白质被定义,但isoprenylated蛋白蛋白水解和羧基甲基化的重要性不太清楚。在这里,我们发现,不仅香叶基香叶基也水解和羧基甲基化是Gγ2的质膜的正确定位是至关重要的。此外,我们展示了质膜的内小叶和Gγ2亚单位(氨基酸精氨酸-62,赖氨酸64和Lys-65)作为第二信号的带正电荷的C-末端结构域之间的静电相互作用的重要性到达质膜。实际上,在Gγ2 C末端氨基酸的单个或多个点突变对Gγ2蛋白质膜相互作用显著作用,其定位于带电LD(液体无序)膜微区。本文是标题的特殊问题的一部分:膜脂质疗法:靶向PabloV.Scribá编辑的生物膜的药物。强调 ? Gβγ二聚体驱动器与细胞膜G蛋白的异二聚体之间的相互作用。还不仅香叶基香叶基而且蛋白水解和羧基甲基化是用于Gγ2的在质膜的定位是必不可少的。还我们发现该膜的内小叶和Gγ2亚基的C末端结构域之间的静电相互作用的重要性。 ]]>

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