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Detectionof Late Intermediates in Virus Capsid Assemblyby Charge Detection Mass Spectrometry

机译:检测衣壳组装中的后期中间体通过电荷检测质谱法

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摘要

The assembly of hundreds of identical proteins into an icosahedral virus capsid is a remarkable feat of molecular engineering. How this occurs is poorly understood. Key intermediates have been anticipated at the end of the assembly reaction, but it has not been possible to detect them. In this work we have used charge detection mass spectrometry to identify trapped intermediates from late in the assembly of the hepatitis B virus T = 4 capsid, a complex of 120 protein dimers. Prominent intermediates are found with 104/105, 110/111, and 117/118 dimers. Cryo-EM observations indicate the intermediates are incomplete capsids and, hence, on the assembly pathway. On the basis of their stability and kinetic accessibility we have proposed plausible structures. The prominent trapped intermediate with 104 dimers is attributed to an icosahedron missing two neighboring facets, the 111-dimer species is assigned to an icosahedron missing a single facet, and the intermediate with 117 dimers is assigned to a capsid missing a ring of three dimers in the center of a facet.
机译:将数百种相同的蛋白质组装成二十面体病毒衣壳是分子工程学的一项非凡成就。这种情况的发生方式知之甚少。在组装反应结束时已预见到了关键中间体,但无法检测到它们。在这项工作中,我们已使用电荷检测质谱法从乙肝病毒T = 4衣壳(120个蛋白质二聚体的复合物)的组装后期鉴定出被捕获的中间体。发现具有104 / 105、110 / 111和117/118二聚体的突出中间体。冷冻-EM观察表明,中间体是不完整的衣壳,因此在组装路径上。基于它们的稳定性和动力学可及性,我们提出了合理的结构。有104个二聚体的突出中间体被归因于二十面体缺少两个相邻的面,111二聚体物种被归类为二十面体缺少一个单面,中间有117个二聚体的衣壳被赋予衣壳中缺少三个二聚体的环。小平面的中心。

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