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通过在金黄色葡萄球菌细胞上进行免疫吸附来分离包被小泡。

Coated vesicle isolation by immunoadsorption on Staphylococcus aureus cells.

作者信息

Merisko E M, Farquhar M G, Palade G E

出版信息

J Cell Biol. 1982 Mar;92(3):846-57. doi: 10.1083/jcb.92.3.846.

Abstract

Porcine brain coated vesicles were isolated from crude fractions of tissue homogenates by affinity separation using anticlathrin-coated STaphylococcus aureus (Staph A) cells as a solid-phase immunoadsorbent. The specificity of the immunoadsorption was monitored by SDS PAGE analysis and by competitive ELISA assays. SDS PAGE of the material immunoadsorbed from a fraction of porcine bran smooth microsomes showed a selective enrichment in a 180,000 mol wt protein. In an ELISA assay, this protein competed effectively--in binding anticlathrin--with clathrin extracted from a coated vesicle preparation. When the immunoadsorbed fraction was examined by electron microscopy, coated vesicles and vesicle-free cages were found forming a quasicontinuous monolayer on the surface of the Staph A cells. Other particles were not adsorbed, and the controls were free of either clathrin cages or coated vesicles. Upon extensive dialysis (against MES buffer, pH 6.5), similar cages appeared on the surface of anticlathrin-coated Staph A cells reacted with extracted clathrin. This study demonstrates that anticlathrin-coated Staph A cells can be used for the isolation and purification of a homogeneous population of coated vesicles. In addition, the ability of extracted clathrin to bind and to polymerize onto the Staph A cells raises the possibility of using this technique to further explore the conditions required for cage and/or vesicle reconstitution.

摘要

使用抗网格蛋白包被的金黄色葡萄球菌(葡萄球菌A)细胞作为固相免疫吸附剂,通过亲和分离从组织匀浆的粗分级分中分离猪脑包被囊泡。通过SDS-PAGE分析和竞争性ELISA测定来监测免疫吸附的特异性。对从猪脑平滑微粒体部分免疫吸附的物质进行SDS-PAGE分析,结果显示在分子量为180,000的蛋白质中出现选择性富集。在ELISA测定中,该蛋白质在结合抗网格蛋白方面与从包被囊泡制剂中提取的网格蛋白有效竞争。当通过电子显微镜检查免疫吸附部分时,发现包被囊泡和无囊泡笼在葡萄球菌A细胞表面形成准连续单层。其他颗粒未被吸附,并且对照中没有网格蛋白笼或包被囊泡。经过广泛透析(针对MES缓冲液,pH 6.5)后,与提取的网格蛋白反应的抗网格蛋白包被的葡萄球菌A细胞表面出现类似的笼状结构。本研究表明,抗网格蛋白包被的葡萄球菌A细胞可用于分离和纯化均匀的包被囊泡群体。此外,提取的网格蛋白结合并聚合到葡萄球菌A细胞上的能力增加了使用该技术进一步探索笼状结构和/或囊泡重构所需条件的可能性。

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