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水泡性口炎病毒野生型和突变型M蛋白与完整病毒粒子中病毒核衣壳和包膜的相互作用。来自[125I]碘萘叠氮化物标记和特异性交联的证据。

Interactions of wild-type and mutant M protein of vesicular stomatitis virus with viral nucleocapsid and envelope in intact virions. Evidence from [125I]iodonaphthyl azide labeling and specific cross-linking.

作者信息

Mancarella D A, Lenard J

出版信息

Biochemistry. 1981 Nov 24;20(24):6872-7. doi: 10.1021/bi00527a020.

Abstract

Four different temperature-sensitive M protein mutants (tsM) of vesicular stomatitis virus (VSV) were characterized with regard to the association of the mutated M protein either with nucleocapsids or with membranes in the intact virions. Virions were labeled with the photoreactive hydrophobic probe [125I]iodonaphthyl azide (INA) to assess interactions between viral proteins and the lipid envelope. In wild type (wt) virions, the three major structural proteins--G, M, and N--were labeled in the ratio ca. 1.0:0.4:0.2. INA labeled only the membrane-associated peptide of G protein, both in the intact virion and in reconstituted G protein--viral lipid vesicles, demonstrating the specificity of INA for lipid bilayer regions. Labeling of tsM virions with INA resulted in a 2--3-fold greater incorporation into M protein than was found for wt virions, suggesting increased M--membrane associations in the mutant virions. Temperature-stable revertants from tsM possessed wt labeling characteristics. Interaction of the M protein with nucleocapsids was assessed from the abundance of disulfide-linked M--N complexes found after disruption of the virions by sodium dodecyl sulfate solution under nonreducing conditions. The abundance of such complexes was 30--80% less from tsM virions than from wt virions, suggesting decreased M--nucleocapsid interactions in tsM virions. Temperature-stable revertants from tsM resembled wt in the abundance of M--N complex formed. We conclude that the mutations alter M protein in such a way as simultaneously to increase its association with membrane and to decrease its affinity for nucleocapsids in the intact virion.

摘要

针对水泡性口炎病毒(VSV)的四种不同温度敏感型M蛋白突变体(tsM),研究了完整病毒粒子中突变的M蛋白与核衣壳或膜的结合情况。用光反应性疏水探针[125I]碘萘叠氮化物(INA)标记病毒粒子,以评估病毒蛋白与脂质包膜之间的相互作用。在野生型(wt)病毒粒子中,三种主要结构蛋白——G、M和N——的标记比例约为1.0:0.4:0.2。INA仅标记完整病毒粒子和重组G蛋白-病毒脂质囊泡中G蛋白的膜相关肽段,证明了INA对脂质双层区域的特异性。用INA标记tsM病毒粒子后,其掺入M蛋白的量比wt病毒粒子高2至3倍,表明突变病毒粒子中M-膜的结合增加。tsM的温度稳定回复株具有wt的标记特征。在非还原条件下,用十二烷基硫酸钠溶液破坏病毒粒子后,通过二硫键连接的M-N复合物的丰度来评估M蛋白与核衣壳的相互作用。tsM病毒粒子中这种复合物的丰度比wt病毒粒子低30%至80%,表明tsM病毒粒子中M-核衣壳的相互作用减弱。tsM的温度稳定回复株在形成的M-N复合物丰度方面与wt相似。我们得出结论,这些突变以某种方式改变了M蛋白,使其在完整病毒粒子中与膜的结合增加,同时对核衣壳的亲和力降低。

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