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The Reovirus Mutant tsA279 L2 Gene Is Associated with Generation of a Spikeless Core Particle: Implications for Capsid Assembly

机译:呼肠孤病毒突变tsA279 L2基因与无穗状核心粒子的生成有关:衣壳装配的影响。

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摘要

Previous studies which used intertypic reassortants of the wild-type reovirus serotype 1 Lang and the temperature-sensitive (ts) serotype 3 mutant clone tsA279 identified two ts lesions; one lesion, in the M2 gene segment, was associated with defective transmembrane transport of restrictively assembled virions (P. R. Hazelton and K. M. Coombs, Virology 207:46–58, 1995). In the present study we show that the second lesion, in the L2 gene segment, which encodes the λ2 protein, is associated with the accumulation of a core-like particle defective for the λ2 pentameric spike. Physicochemical, biochemical, and immunological studies showed that these structures were deficient for genomic double-stranded RNA, the core spike protein λ2, and the minor core protein μ2. Core particles with the λ2 spike structure accumulated after temperature shift-down from a restrictive to a permissive temperature in the presence of cycloheximide. These data suggest the spike-deficient, core-like particle is an assembly intermediate in reovirus morphogenesis. The existence of this naturally occurring primary core structure suggests that the core proteins λ1, λ3, and ς2 interact to initiate the process of virion capsid assembly through a dodecahedral mechanism. The next step in the proposed capsid assembly model would be the association of the minor core protein μ2, either preceding or collateral to the condensation of the λ2 pentameric spike at the apices of the primary core structure. The assembly pathway of the reovirus double capsid is further elaborated when these observations are combined with structures identified in other studies.
机译:先前的研究使用野生型呼肠孤病毒血清型1 Lang和温度敏感型(ts)血清型3突变克隆tsA279进行类型间重配,发现了两个ts病变。 M2基因片段中的一个病变与限制性组装的病毒颗粒的跨膜转运缺陷有关(P. R. Hazelton和K. M. Coombs,病毒学207:46-58,1995)。在本研究中,我们表明,L2基因片段中的第二个病变编码λ2蛋白,与λ2五聚体峰缺陷的核样颗粒的积累有关。物理化学,生物化学和免疫学研究表明,这些结构缺乏基因组双链RNA,核心刺突蛋白λ2和次要核心蛋白μ2。在存在环己酰亚胺的情况下,温度从限制温度降到允许温度后,会累积具有λ2尖峰结构的核心颗粒。这些数据表明穗缺乏,核样颗粒是呼肠孤病毒形态发生中的组装中间体。这种天然存在的一级核心结构的存在表明,核心蛋白λ1,λ3和ς2相互作用以通过十二面体机制启动病毒体衣壳组装过程。拟议的衣壳装配模型中的下一步将是次要核心蛋白μ2的结合,该结合在λ2五聚体峰在主要核心结构的顶点处缩合之前或与其相关。当这些观察结果与其他研究中确定的结构结合时,呼肠孤病毒双衣壳的组装途径将进一步完善。

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