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巯基标记作为研究参与脂多糖生物合成的膜蛋白拓扑结构的工具

Sulfhydryl Labeling as a Tool to Investigate the Topology of Membrane Proteins Involved in Lipopolysaccharide Biosynthesis.

作者信息

Tavares-Carreón Faviola, Ruan Xiang, Ford Amy, Valvano Miguel A

机构信息

Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada.

Centre for Infection and Immunity, Queen's University Belfast, Belfast, UK.

出版信息

Methods Mol Biol. 2019;1954:203-213. doi: 10.1007/978-1-4939-9154-9_16.

Abstract

Establishing the topology of membrane proteins, especially when their tridimensional structures are unavailable, is critical to identify functional regions, delimit the protein orientation in the membrane, the number of transmembrane segments, and the position of critical amino acids (whether exposed to the solvent or embedded in the lipid bilayer). Elucidating the topology of bacterial integral membrane proteins typically involves the construction of deletion-fusions whereby regions of the protein are fused to reporters. Although these methods have several advantages, they are also artifact prone. In contrast, methods based on single amino acid substitutions preserve the native protein intact. We describe here an assay to analyze the topology of membrane proteins involved in the biogenesis of bacterial glycoconjugates, which is based on the accessibility of cysteine substitutions at various places in the protein under in vivo and in vitro conditions. Cysteine residues are detected with polyethylene glycol-maleimide (PEG-Mal). This procedure can be applied to crude bacterial cell extracts and does not require protein purification.

摘要

确定膜蛋白的拓扑结构,尤其是在其三维结构未知的情况下,对于识别功能区域、界定蛋白质在膜中的方向、跨膜片段的数量以及关键氨基酸的位置(无论其暴露于溶剂中还是嵌入脂质双层中)至关重要。阐明细菌整合膜蛋白的拓扑结构通常涉及构建缺失融合体,即将蛋白质的区域与报告基因融合。尽管这些方法有几个优点,但它们也容易产生假象。相比之下,基于单氨基酸取代的方法能使天然蛋白质保持完整。我们在此描述一种分析参与细菌糖缀合物生物合成的膜蛋白拓扑结构的测定方法,该方法基于在体内和体外条件下蛋白质不同位置的半胱氨酸取代的可及性。用聚乙二醇 - 马来酰亚胺(PEG - Mal)检测半胱氨酸残基。此程序可应用于粗制细菌细胞提取物,且无需蛋白质纯化。

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