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Cryo-electron microscopy for the study of virus assembly

机译:冷冻电子显微镜研究病毒组件

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摘要

Although viruses are extremely diverse in shape and size, evolution has led to a limited number of viral classes or lineages, which is probably linked to the assembly constraints of a viable capsid. Viral assembly mechanisms are restricted to two general pathways, (i) co-assembly of capsid proteins and single-stranded nucleic acids and (ii) a sequential mechanism in which scaffolding-mediated capsid precursor assembly is followed by genome packaging. Cryo-electron microscopy (cryo-EM) and cryo-electron tomography (cryo-ET), which are revolutionizing structural biology, are central to determining the high-resolution structures of many viral assemblies as well as those of assembly intermediates. This wealth of cryo-EM data has also led to the development and redesign of virus-based platforms for biomedical and biotechnological applications. In this Review, we will discuss recent viral assembly analyses by cryo-EM and cryo-ET showing how natural assembly mechanisms are used to encapsulate heterologous cargos including chemicals, enzymes, and/or nucleic acids for a variety of nanotechnological applications.
机译:虽然病毒的形状和尺寸非常多样化,但进化导致了有限数量的病毒类或谱系,这可能与可行性衣壳的组装约束有关。病毒组装机制仅限于两个一般途径,(i)衣壳蛋白和单链核酸的共组装和(ii)一种顺序机制,其中支架介导的胶囊前体组件随后是基因组包装。彻底改变结构生物学的冷冻电子显微镜(Cryo-ED)和冷冻电子断层扫描(Cryo-et)是确定许多病毒组件的高分辨率结构以及组装中间体的高分辨率结构。这种Cryo-EM数据的财富也导致了基于病毒的生物医学和生物技术应用的平台的开发和重新设计。在该综述中,我们将通过Cryo-Em和Cryo-Et讨论最近的病毒组件分析,所述病毒组件分析显示天然组装机制如何用于将异源尸体包封,包括各种纳米技术应用的化学品,酶和/或核酸。

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