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鸟嘌呤核苷酸结合蛋白G11α的棕榈酰化在确定其与质膜相互作用中的作用。

The role of palmitoylation of the guanine nucleotide binding protein G11 alpha in defining interaction with the plasma membrane.

作者信息

McCallum J F, Wise A, Grassie M A, Magee A I, Guzzi F, Parenti M, Milligan G

机构信息

Division of Biochemistry and Molecular Biology, University of Glasgow, Scotland, U.K.

出版信息

Biochem J. 1995 Sep 15;310 ( Pt 3)(Pt 3):1021-7. doi: 10.1042/bj3101021.

Abstract

Mutations of Cys-9 to serine, Cys-10 to serine and a combination of both alterations were produced in a cDNA encoding murine G11 alpha to potentially interfere with the ability of the expressed polypeptides to act as substrates for post-translational palmitoylation. Each of these mutants and the wild-type protein were expressed in simian COS-1 cells. Mutation of either cysteine-9 or cysteine-10 decreased the degree of palmitoylation of the protein by some 80% compared with the wild-type, while the double mutant totally failed to incorporate [3H]palmitate. By contrast, in all transfections the endogenously expressed simian G11 alpha incorporated [3H]palmitate to similar levels. Particulate and cytoplasmic fractions from these cells were subjected to SDS/PAGE under conditions which allow resolution of primate and rodent forms of G11 alpha. Immunoblotting of these fractions demonstrated that in all cases the endogenously expressed simian G11 alpha was exclusively associated with the particulate fraction, as was the transfected and expressed wild-type murine G11 alpha. By contrast, each of the mutated forms of murine G11 alpha displayed a distribution in which approx. 70% of the expressed protein was present in the particulate fraction and 30% in the supernatant. To examine the conformation of the particulate expressed forms of murine G11 alpha, these fractions were treated with various concentrations of sodium cholate and immunoblots were subsequently performed on the solubilized and remaining particulate proteins. Whereas essentially all of the endogenous simian G11 alpha was solubilized by treatment with 1% (w/v) sodium cholate and some 50% with 0.32% cholate, expressed wild-type murine G11 alpha was more recalcitrant to solubilization. However, that fraction of wild-type murine G11 alpha which was solubilized behaved identically to the endogenous simian G11 alpha on Superose-12 gel-exclusion chromatography. The particulate fraction of the C9S/C10S double mutant of murine G11 alpha was highly resistant to solubilization by sodium cholate, whereas the particulate fractions of the two single cysteine to serine mutants were intermediate to the wild-type and double mutant in their ability to be solubilized by this detergent. These data demonstrate that the palmitoylation status of the cysteine residues at positions 9 and 10 in murine G11 alpha plays a central role in defining membrane association of this G-protein and indicate that much of the particulate fraction of the expressed palmitoylation-resistant mutants is likely to represent non-functional rather than correctly folded protein.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在编码小鼠G11α的cDNA中,将半胱氨酸-9突变为丝氨酸、半胱氨酸-10突变为丝氨酸以及二者组合突变,以潜在地干扰表达的多肽作为翻译后棕榈酰化底物的能力。这些突变体和野生型蛋白均在猴COS-1细胞中表达。与野生型相比,半胱氨酸-9或半胱氨酸-10的突变使蛋白的棕榈酰化程度降低了约80%,而双突变体则完全无法掺入[3H]棕榈酸。相比之下,在所有转染中,内源性表达的猴G11α掺入[3H]棕榈酸的水平相似。这些细胞的微粒体和细胞质组分在能分辨灵长类和啮齿类形式G11α的条件下进行SDS/PAGE。对这些组分进行免疫印迹分析表明,在所有情况下,内源性表达的猴G11α仅与微粒体组分相关,转染并表达的野生型小鼠G11α也是如此。相比之下,小鼠G11α的每种突变形式都呈现出一种分布,即约70%的表达蛋白存在于微粒体组分中,30%存在于上清液中。为了检测小鼠G11α微粒体表达形式的构象,这些组分用不同浓度的胆酸钠处理,随后对溶解的和剩余的微粒体蛋白进行免疫印迹。虽然基本上所有内源性猴G11α在用1%(w/v)胆酸钠处理时都能溶解,用0.32%胆酸钠处理时有约50%能溶解,但表达的野生型小鼠G11α更难溶解。然而,溶解的野生型小鼠G11α部分在Superose-12凝胶排阻色谱上的行为与内源性猴G11α相同。小鼠G11α的C9S/C10S双突变体的微粒体组分对胆酸钠溶解具有高度抗性,而两个半胱氨酸突变为丝氨酸的单突变体的微粒体组分在被这种去污剂溶解的能力上介于野生型和双突变体之间。这些数据表明,小鼠G11α中第9和1位半胱氨酸残基的棕榈酰化状态在定义该G蛋白的膜结合中起核心作用,并表明表达的抗棕榈酰化突变体的大部分微粒体组分可能代表无功能而非正确折叠的蛋白。(摘要截短于400字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3e0/1135997/f1bda5fdb56c/biochemj00055-0295-a.jpg

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