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水疱性口炎病毒M蛋白在受感染细胞胞质溶胶中的溶解度或从病毒粒子中分离出的溶解度。

Solubility of vesicular stomatitis virus M protein in the cytosol of infected cells or isolated from virions.

作者信息

McCreedy B J, McKinnon K P, Lyles D S

机构信息

Department of Microbiology and Immunology, Bowman Gray School of Medicine of Wake Forest University, Winston-Salem, North Carolina 27103.

出版信息

J Virol. 1990 Feb;64(2):902-6. doi: 10.1128/JVI.64.2.902-906.1990.

Abstract

The peripheral membrane M protein of vesicular stomatitis virus purified by detergent extraction of virions and ion-exchange chromatography was determined to be a monomer in the absence of detergent at high salt concentrations. Reduction of the ionic strength below 0.2 M resulted in a rapid aggregation of M protein. This self-association was reversible by the detergent Triton X-100 even in low salt. However, aggregation was not reversible by high salt concentration alone. M protein is initially synthesized as a soluble protein in the cytosol of infected cells, thus raising the question of how the solubility of M protein is maintained at physiological ionic strength. Addition of radiolabeled M protein purified from virions to unlabeled cytosol from either infected or uninfected cells inhibited the self-association reaction. Cytosolic fractions from infected or uninfected cells were equally effective at preventing the self-association of M protein. Self-association could also be prevented by an irrelevant protein such as bovine serum albumin. Sedimentation velocity analysis indicated that most of the newly synthesized M protein is monomeric, suggesting that the solubility of M protein in the cytosol is maintained by either low-affinity interaction with macromolecules in the cytosol or interaction of a small population of M-protein molecules with cytosolic components.

摘要

通过去污剂提取病毒粒子和离子交换色谱法纯化的水疱性口炎病毒外周膜M蛋白,在高盐浓度且无去污剂的情况下被确定为单体。离子强度降低至0.2 M以下会导致M蛋白迅速聚集。即使在低盐条件下,去污剂Triton X-100也可使这种自缔合反应逆转。然而,仅高盐浓度不能使聚集逆转。M蛋白最初在受感染细胞的胞质溶胶中作为可溶性蛋白合成,因此引发了一个问题,即M蛋白在生理离子强度下的溶解度是如何维持的。将从病毒粒子中纯化的放射性标记M蛋白添加到来自受感染或未受感染细胞的未标记胞质溶胶中,可抑制自缔合反应。来自受感染或未受感染细胞的胞质级分在防止M蛋白自缔合方面同样有效。无关蛋白如牛血清白蛋白也可防止自缔合。沉降速度分析表明,大多数新合成的M蛋白是单体,这表明M蛋白在胞质溶胶中的溶解度是通过与胞质溶胶中的大分子进行低亲和力相互作用或一小部分M蛋白分子与胞质成分相互作用来维持的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ff/249187/17ffd7c3f346/jvirol00057-0449-a.jpg

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