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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Disassembly Intermediates of the Brome Mosaic Virus Identified by Charge Detection Mass Spectrometry
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Disassembly Intermediates of the Brome Mosaic Virus Identified by Charge Detection Mass Spectrometry

机译:通过电荷检测质谱法鉴定的铜镶嵌病毒的拆卸中间体

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摘要

Capsid disassembly and genome release are critical steps in the lifecycle of a virus. However, their mechanisms are poorly understood, both in vivo and in vitro. Here, we have identified two in vitro disassembly pathways of the brome mosaic virus (BMV) by charge detection mass spectrometry and transmission electron microscopy. When subjected to a pH jump to a basic environment at low ionic strength, protein-RNA interactions are disrupted. Under these conditions, BMV appears to disassemble mainly through a global cleavage event into two main fragments: a near complete capsid that has released the RNA and the released RNA complexed to a small number of the capsid proteins. Upon slow buffer exchange to remove divalent cations at neutral pH, capsid protein interactions are disrupted. The BMV virions swell but there is no measurable loss of the RNA. Some of the virions break into small fragments, leading to an increase in the abundance of species with masses less than 1 MDa. The peak attributed to the BMV virion shifts to a higher mass with time. The mass increase is attributed to additional capsid proteins associating with the disrupted capsid protein-RNA complex, where the RNA is presumably partially exposed. It is likely that this pathway is more closely related to how the capsid disassembles in vivo, as it offers the advantage of protecting the RNA with the capsid protein until translation begins.
机译:衣壳拆卸和基因组释放是病毒生命周期中的关键步骤。然而,它们的机制差不多,包括体内和体外。在这里,我们通过电荷检测质谱和透射电子显微镜鉴定了铜绿马病毒(BMV)的两种体外拆卸途径。当经受低离子强度跳至基本环境的pH跳跃时,蛋白质-RNA相互作用被破坏。在这些条件下,BMV似乎主要通过全球切割事件分为两个主要碎片:释放RNA和释放的RNA络合到少量衣壳蛋白的近端完全衣壳中的近完整的衣壳。在缓冲缓冲速度交换时去除中性pH下的二价阳离子,衣壳蛋白相互作用被破坏。 BMV病毒粒子溶胀但没有可测量的RNA损失。其中一些病毒群落分成小碎片,导致群众含量不到1兆帕的物种的增加。归因于BMV病毒群岛的峰值随时间转移到更高的质量。质量增加归因于额外的衣壳蛋白,其与破坏的衣壳蛋白-RNA复合物相关,其中RNA可能是部分暴露的。这种途径可能与衣壳的拆卸方式更密切相关,因为它提供了保护RNA与衣壳蛋白的优点直到翻译开始。

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