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T=3 二十面体病毒衣壳内蛋白质-蛋白质相互作用界面的多样性。

The diversity of protein-protein interaction interfaces within T=3 icosahedral viral capsids.

作者信息

Prakash Digvijay Lalwani, Gosavi Shachi

机构信息

Simons Centre for the Study of Living Machines, National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bengaluru, India.

出版信息

Front Mol Biosci. 2022 Oct 20;9:967877. doi: 10.3389/fmolb.2022.967877. eCollection 2022.

Abstract

Some non-enveloped virus capsids assemble from multiple copies of a single type of coat-protein (CP). The comparative energetics of the diverse CP-CP interfaces present in such capsids likely govern virus assembly-disassembly mechanisms. The T = 3 icosahedral capsids comprise 180 CP copies arranged about two-, three-, five- and six-fold axes of (quasi-)rotation symmetry. Structurally diverse CPs can assemble into T = 3 capsids. Specifically, the CPs are structurally distinct from the , and CPs which fold into the classic "jelly-roll" fold. However, capsids from across the four families are known to disassemble into dimers. To understand whether the overall symmetry of the capsid or the structural details of the CP determine virus assembly-disassembly mechanisms, we analyze the different CP-CP interfaces that occur in the four virus families. Previous work studied protein homodimer interfaces using interface size (relative to the monomer) and hydrophobicity. Here, we analyze all CP-CP interfaces using these two parameters and find that the dimerization interface (present between two CPs congruent through a two-fold axis of rotation) has a larger relative size in the than in the other viruses. The relative sizes of the other interfaces and all the jelly-roll interfaces are similar. However, the dimerization interfaces across families have slightly higher hydrophobicity, potentially making them stronger than other interfaces. Finally, although the CP-monomers of the jelly-roll viruses are structurally similar, differences in their dimerization interfaces leads to varied dimer flexibility. Overall, differences in CP-structures may induce different modes of swelling and assembly-disassembly in the T = 3 viruses.

摘要

一些无包膜病毒衣壳由单一类型的衣壳蛋白(CP)的多个拷贝组装而成。此类衣壳中存在的多种CP-CP界面的比较能量学可能决定病毒的组装-拆卸机制。T = 3二十面体衣壳由180个CP拷贝围绕(准)旋转对称的二、三、五和六重轴排列而成。结构多样的CP可以组装成T = 3衣壳。具体而言,这些CP在结构上与折叠成经典“果冻卷”折叠的CP、CP和CP不同。然而,已知来自这四个病毒家族的衣壳会分解成二聚体。为了了解衣壳的整体对称性或CP的结构细节是否决定病毒的组装-拆卸机制,我们分析了四个病毒家族中出现的不同CP-CP界面。先前的工作使用界面大小(相对于单体)和疏水性研究了蛋白质同型二聚体界面。在这里,我们使用这两个参数分析了所有CP-CP界面,发现二聚化界面(存在于通过二重旋转轴全等的两个CP之间)在中比在其他病毒中具有更大的相对大小。其他界面和所有果冻卷界面的相对大小相似。然而,不同家族的二聚化界面具有略高的疏水性,这可能使它们比其他界面更强。最后,尽管果冻卷病毒的CP单体在结构上相似,但它们二聚化界面的差异导致二聚体的柔韧性不同。总体而言,CP结构的差异可能会在T = 3病毒中诱导不同的膨胀模式和组装-拆卸模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe72/9631432/86284eeb013c/fmolb-09-967877-g001.jpg

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