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一种简单、自动化、高分辨率的质谱方法,用于确定复杂蛋白质的二硫键和糖基化模式:亚群 A 禽肉瘤和白血病病毒包膜糖蛋白。

Simple, automated, high resolution mass spectrometry method to determine the disulfide bond and glycosylation patterns of a complex protein: subgroup A avian sarcoma and leukosis virus envelope glycoprotein.

机构信息

Department of Molecular Medicine, the Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

J Biol Chem. 2011 May 20;286(20):17954-67. doi: 10.1074/jbc.M111.229377. Epub 2011 Mar 23.

Abstract

Enveloped viruses must fuse the viral and cellular membranes to enter the cell. Understanding how viral fusion proteins mediate entry will provide valuable information for antiviral intervention to combat associated disease. The avian sarcoma and leukosis virus envelope glycoproteins, trimers composed of surface (SU) and transmembrane heterodimers, break the fusion process into several steps. First, interactions between SU and a cell surface receptor at neutral pH trigger an initial conformational change in the viral glycoprotein trimer followed by exposure to low pH enabling additional conformational changes to complete the fusion of the viral and cellular membranes. Here, we describe the structural characterization of the extracellular region of the subgroup A avian sarcoma and leukosis viruses envelope glycoproteins, SUATM129 produced in chicken DF-1 cells. We developed a simple, automated method for acquiring high resolution mass spectrometry data using electron capture dissociation conditions that preferentially cleave the disulfide bond more readily than the peptide backbone amide bonds that enabled the identification of disulfide-linked peptides. Seven of nine disulfide bonds were definitively assigned; the remaining two bonds were assigned to an adjacent pair of cysteine residues. The first cysteine of surface and the last cysteine of the transmembrane form a disulfide bond linking the heterodimer. The surface glycoprotein contains a free cysteine at residue 38 previously reported to be critical for virus entry. Eleven of 13 possible SUATM129 N-linked glycosylation sites were modified with carbohydrate. This study demonstrates the utility of this simple yet powerful method for assigning disulfide bonds in a complex glycoprotein.

摘要

包膜病毒必须融合病毒和细胞膜才能进入细胞。了解病毒融合蛋白如何介导进入将为抗病毒干预提供有价值的信息,以对抗相关疾病。禽肉瘤和白血病病毒包膜糖蛋白由表面 (SU) 和跨膜异二聚体组成的三聚体,将融合过程分解为几个步骤。首先,SU 与中性 pH 下细胞表面受体之间的相互作用触发病毒糖蛋白三聚体的初始构象变化,随后暴露于低 pH 值使其他构象变化完成病毒和细胞膜的融合。在这里,我们描述了亚组 A 禽肉瘤和白血病病毒包膜糖蛋白 SUATM129 的结构特征,该蛋白在鸡 DF-1 细胞中产生。我们开发了一种简单的自动化方法,可在电子捕获解离条件下获取高分辨率质谱数据,该条件优先切割二硫键,而不是肽骨干酰胺键,从而能够识别二硫键连接的肽。确定了 9 个二硫键中的 7 个;其余两个键分配给相邻的一对半胱氨酸残基。表面的第一个半胱氨酸和跨膜的最后一个半胱氨酸形成二硫键,将异二聚体连接起来。表面糖蛋白在残基 38 处含有一个先前报道对病毒进入至关重要的游离半胱氨酸。13 个可能的 SUATM129 N-连接糖基化位点中有 11 个被碳水化合物修饰。这项研究证明了这种简单而强大的方法在分配复杂糖蛋白中二硫键方面的实用性。

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