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水泡性口炎病毒基质蛋白中与核衣壳结合有关的序列。

Sequences of the vesicular stomatitis virus matrix protein involved in binding to nucleocapsids.

作者信息

Kaptur P E, Rhodes R B, Lyles D S

机构信息

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

出版信息

J Virol. 1991 Mar;65(3):1057-65. doi: 10.1128/JVI.65.3.1057-1065.1991.

Abstract

The purpose of these experiments was to study the physical structure of the nucleocapsid-M protein complex of vesicular stomatitis virus by analysis of nucleocapsid binding by wild-type and mutant M proteins and by limited proteolysis. We used the temperature-sensitive M protein mutant tsO23 and six temperature-stable revertants of tsO23 to test the effect of sequence changes on M protein binding to the nucleocapsid as a function of NaCl concentration. The results showed that M proteins from wild-type, mutant, and three of the revertant viruses had similar NaCl titration curves, while the curve for M proteins from the other three revertants differed significantly. The altered NaCl dependence of M protein was correlated with a single amino acid substitution from Phe to Leu at position 111 compared with the original temperature-sensitive mutant and was not correlated with a substitution of Gly to Glu at position 21 in tsO23 and the revertants. To determine whether protease cleavage sites in the M protein were protected by interaction with the nucleocapsid, nucleocapsid-M protein complexes were subjected to limited proteolysis with trypsin, chymotrypsin, or Staphylococcus aureus V8 protease. The initial trypsin and chymotrypsin cleavage sites, located after amino acids 19 and 20, respectively, were as accessible to proteases when M protein was bound to the nucleocapsid as when it was purified, indicating that this region of the protein does not interact directly with the nucleocapsid. Furthermore, trypsin or chymotrypsin treatment released the M protein fragments from the nucleocapsid, presumably due to conformational changes following proteolysis. V8 protease cleaved the M protein at position 34 or 50, producing two distinct fragments. The M protein fragment produced by V8 protease cleavage at position 34 remained associated with the nucleocapsid, while the fragment produced by cleavage at position 50 was released from the nucleocapsid. These results suggest that the amino-terminal region of the M protein around amino acid 20 does not interact directly with the nucleocapsid and that conformational changes resulting from single-amino-acid substitutions at other sites in the M protein are important for this interaction.

摘要

这些实验的目的是通过分析野生型和突变型M蛋白与核衣壳的结合以及有限蛋白酶解作用,来研究水疱性口炎病毒核衣壳-M蛋白复合物的物理结构。我们使用温度敏感型M蛋白突变体tsO23及其六个温度稳定型回复突变体,来测试序列变化对M蛋白与核衣壳结合的影响,该影响是NaCl浓度的函数。结果显示,野生型、突变型以及三个回复突变病毒的M蛋白具有相似的NaCl滴定曲线,而另外三个回复突变体的M蛋白曲线则有显著差异。与原始温度敏感型突变体相比,M蛋白对NaCl依赖性的改变与111位氨基酸从苯丙氨酸到亮氨酸的单个氨基酸取代有关,而与tsO23及其回复突变体中21位甘氨酸到谷氨酸的取代无关。为了确定M蛋白中的蛋白酶切割位点是否通过与核衣壳的相互作用而受到保护,将核衣壳-M蛋白复合物用胰蛋白酶、胰凝乳蛋白酶或金黄色葡萄球菌V8蛋白酶进行有限蛋白酶解。最初的胰蛋白酶和胰凝乳蛋白酶切割位点分别位于氨基酸19和20之后,当M蛋白与核衣壳结合时,这些位点对蛋白酶的可及性与M蛋白纯化时相同,这表明该蛋白区域不直接与核衣壳相互作用。此外,胰蛋白酶或胰凝乳蛋白酶处理会从核衣壳中释放出M蛋白片段,这可能是由于蛋白酶解后构象发生了变化。V8蛋白酶在34或50位切割M蛋白,产生两个不同的片段。V8蛋白酶在34位切割产生的M蛋白片段仍与核衣壳相关联,而在50位切割产生的片段则从核衣壳中释放出来。这些结果表明,M蛋白中氨基酸20周围的氨基末端区域不直接与核衣壳相互作用,并且M蛋白其他位点的单氨基酸取代引起的构象变化对这种相互作用很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a158/239871/436535b49cca/jvirol00046-0019-a.jpg

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