首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >CD81 extracted in SMALP nanodiscs comprises two distinct protein populations within a lipid environment enriched with negatively charged headgroups
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CD81 extracted in SMALP nanodiscs comprises two distinct protein populations within a lipid environment enriched with negatively charged headgroups

机译:在Smalp Nanodisc中提取的CD81在脂质环境中包含两个不同的蛋白质群,富含带负电的头组

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摘要

Tetraspanins exert a wide range of cellular functions of broad medical importance. Despite this, their biophysical characteristics are incompletely understood. Only two high-resolution structures of full-length tetraspanins have been solved. One is that of human CD81, which is involved in the infectivity of human pathogens including influenza, HIV, the malarial Plasmodium parasite and hepatitis C virus (HCV). The CD81 crystal structure identifies a cholesterol-binding pocket, which has been suggested to be important in the regulation of tetraspanin function. Here we investigate the use of styrene-maleic anhydride co-polymers (SMA) for the solubilisation and purification of CD81 within a lipid environment. When CD81 was expressed in the yeast Pichia pastoris, it could be solubilised and purified using SMA2000. This SMALP-encapsulated CD81 retained its native folded structure, as determined by the binding of two conformation-sensitive anti-CD81 antibodies. Analysis by size exclusion chromatography revealed two distinct populations of CD81, only one of which bound the HCV glycoprotein, E2. Optimization of expression and buffer conditions increased the proportion of E2-binding competent CD81 protein. Mass spectrometry analysis indicated that the lipid environment surrounding CD81 is enriched with negatively charged lipids. These results establish a platform to study the influence of protein-lipid interactions in tetraspanin biology.
机译:四淀粉蛋白施加广泛的医疗重要性的各种细胞功能。尽管如此,他们的生物物理特征是不完全理解的。只解决了全长四淀粉蛋白的两个高分辨率结构。一种是人类CD81,其参与人类病原体的感染性,包括流感,艾滋病毒,疟原虫疟原虫和丙型肝炎病毒(HCV)。 CD81晶体结构鉴定了胆固醇结合口袋,已经表明在四甘蓝蛋白功能的调节方面是重要的。在这里,我们研究了苯乙烯 - 马来酸酐共聚物(SMA)在脂质环境中溶解和纯化CD81的使用。当CD81在酵母Pichia牧场中表达时,它可以使用SMA2000溶解和纯化。该Smalp封装的CD81保留其天然折叠结构,如通过两个构象敏感的抗CD81抗体的结合确定。尺寸排阻色谱法分析显示了两个不同的CD81群,只有其中一个结合HCV糖蛋白,E2。表达和缓冲条件的优化增加了E2结合能称位CD81蛋白的比例。质谱分析表明CD81周围的脂质环境富含带负电荷的脂质。这些结果建立了一种研究蛋白质 - 脂质相互作用在四甘蓝生物学中的平台。

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