首页> 美国卫生研究院文献>Journal of Virology >Adaptation of Reovirus to Growth in the Presence of Protease Inhibitor E64 Segregates with a Mutation in the Carboxy Terminus of Viral Outer-Capsid Protein ς3
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Adaptation of Reovirus to Growth in the Presence of Protease Inhibitor E64 Segregates with a Mutation in the Carboxy Terminus of Viral Outer-Capsid Protein ς3

机译:呼肠孤病毒对蛋白酶抑制剂E64存在下的生长的适应与病毒外衣壳蛋白ς3的羧基末端的突变隔离。

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摘要

Reovirus virions are internalized into cells by receptor-mediated endocytosis. Within the endocytic compartment, the viral outer capsid undergoes acid-dependent proteolysis leading to degradation of ς3 protein and proteolytic cleavage of μ1/μ1C protein. E64 is a specific inhibitor of cysteine-containing proteases that blocks disassembly of reovirus virions. To identify domains in reovirus proteins that influence susceptibility to E64-mediated inhibition of disassembly, we selected variant viruses by serial passage of strain type 3 Dearing (T3D) in murine L929 cells treated with E64. E64-adapted variant viruses (D-EA viruses) produced 7- to 17-fold-greater yields than T3D did after infection of cells treated with 100 μM E64. Viral genes that segregate with growth of D-EA viruses in the presence of E64 were identified by using reassortant viruses isolated from independent crosses of E64-sensitive strain type 1 Lang and two prototype D-EA viruses. Growth of reassortant viruses in the presence of E64 segregated with the S4 gene, which encodes outer-capsid protein ς3. Sequence analysis of S4 genes of three D-EA viruses isolated from independent passage series revealed a common tyrosine-to-histidine mutation at amino acid 354 in the deduced amino acid sequence of ς3. Proteolysis of D-EA virions by endocytic protease cathepsin L occurred with faster kinetics than proteolysis of wild-type T3D virions. Treatment of D-EA virions, but not T3D virions, with cathepsin D resulted in proteolysis of ς3, a property that also was found to segregate with the D-EA S4 gene. These results indicate that a region in ς3 protein containing amino acid 354 influences susceptibility of ς3 to proteolysis during reovirus disassembly.
机译:呼肠孤病毒颗粒通过受体介导的内吞作用而被内化到细胞中。在内吞室中,病毒外衣壳经历了酸依赖性蛋白水解,导致ς3蛋白降解和μ1/μ1C蛋白的蛋白水解裂解。 E64是一种含半胱氨酸蛋白酶的特异性抑制剂,可阻止呼肠孤病毒颗粒的拆卸。为了鉴定呼肠孤病毒蛋白中影响E64介导的分解抑制敏感性的结构域,我们通过在E64处理的鼠L929细胞中通过3型亲代菌株(T3D)的连续传代来选择变异病毒。适应E64的变异病毒(D-EA病毒)比用100μME64处理的细胞感染T3D产生的产量高7到17倍。通过使用从E64敏感株1 Lang的独立杂交株和两种原型D-EA病毒分离的重配病毒,鉴定了在E64存在下与D-EA病毒的生长分离的病毒基因。在E64的存在下,重配病毒的生长与分离外壳蛋白ς3的S4基因分离。从独立传代系列中分离出的三种D-EA病毒的S4基因的序列分析显示,在推导的ς3氨基酸序列中,第354位氨基酸存在酪氨酸到组氨酸的共同突变。内吞蛋白酶组织蛋白酶L对D-EA病毒体的蛋白水解发生的动力学要比野生型T3D病毒体的蛋白水解快。用组织蛋白酶D处理D-EA病毒体而不是T3D病毒体导致ς3的蛋白水解,该属性也被发现与D-EA S4基因分离。这些结果表明,在呼肠孤病毒分解过程中,ς3蛋白中含有354个氨基酸的区域会影响ς3对蛋白水解的敏感性。

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