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宿主 FHL1 蛋白与基孔肯雅病毒 nsP3 蛋白高变区相互作用的结构和功能特征。

Structural and Functional Characterization of Host FHL1 Protein Interaction with Hypervariable Domain of Chikungunya Virus nsP3 Protein.

机构信息

Department of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

Department of Molecular Sciences, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

J Virol. 2020 Dec 9;95(1). doi: 10.1128/JVI.01672-20.

Abstract

Decades of insufficient control have resulted in unprecedented spread of chikungunya virus (CHIKV) around the globe, and millions have suffered from the highly debilitating disease. Nevertheless, the current understanding of CHIKV-host interactions and adaptability of the virus to replication in mosquitoes and mammalian hosts is still elusive. Our new study shows that four-and-a-half LIM domain protein (FHL1) is one of the host factors that interact with the hypervariable domain (HVD) of CHIKV nsP3. Unlike G3BPs, FHL1 is not a prerequisite of CHIKV replication, and many commonly used cell lines do not express FHL1. However, its expression has a detectable stimulatory effect(s) on CHIKV replication, and knockout (KO) cell lines demonstrate slower infection spread. Nuclear magnetic resonance (NMR)-based studies revealed that the binding site of FHL1 in CHIKV nsP3 HVD overlaps that of another proviral host factor, CD2AP. The structural data also demonstrated that FHL1-HVD interaction is mostly determined by the LIM1 domain of FHL1. However, it does not mirror binding of the entire protein, suggesting that other LIM domains are involved. In agreement with previously published data, our biological experiments showed that interactions of CHIKV HVD with CD2AP and FHL1 have additive effects on the efficiency of CHIKV replication. This study shows that CHIKV mutants with extensive modifications of FHL1- or both FHL1- and CD2AP-binding sites remain viable and develop spreading infection in multiple cell types. Our study also demonstrated that other members of the FHL family can bind to CHIKV HVD and thus may be involved in viral replication. Replication of chikungunya virus (CHIKV) is determined by a wide range of host factors. Previously, we have demonstrated that the hypervariable domain (HVD) of CHIKV nsP3 contains linear motifs that recruit defined families of host proteins into formation of functional viral replication complexes. Now, using NMR-based structural and biological approaches, we have characterized the binding site of the cellular FHL1 protein in CHIKV HVD and defined the biological significance of this interaction. In contrast to previously described binding of G3BP to CHIKV HVD, the FHL1-HVD interaction was found to not be a prerequisite of viral replication. However, the presence of FHL1 has a stimulatory effect on CHIKV infectivity and, subsequently, the infection spread. FHL1 and CD2AP proteins were found to have overlapping binding sites in CHIKV HVD and additive proviral functions. Elimination of the FHL1-binding site in the nsP3 HVD can be used for the development of stable, attenuated vaccine candidates.

摘要

几十年来,对基孔肯雅热病毒(CHIKV)的控制不足导致其在全球范围内空前传播,数百万人深受这种高度致残疾病的困扰。然而,目前人们对 CHIKV-宿主相互作用的理解以及该病毒在蚊子和哺乳动物宿主中复制的适应性仍然难以捉摸。我们的新研究表明,四半 LIM 结构域蛋白(FHL1)是与 CHIKV nsP3 的超变区(HVD)相互作用的宿主因子之一。与 G3BPs 不同,FHL1 不是 CHIKV 复制的必要条件,许多常用的细胞系不表达 FHL1。然而,它的表达对 CHIKV 复制有可检测的刺激作用,敲除(KO)细胞系显示感染传播速度较慢。基于核磁共振(NMR)的研究表明,FHL1 在 CHIKV nsP3 HVD 中的结合位点与另一个促进病毒复制的宿主因子 CD2AP 重叠。结构数据还表明,FHL1-HVD 相互作用主要由 FHL1 的 LIM1 结构域决定。然而,它并不反映整个蛋白质的结合,这表明其他 LIM 结构域也参与其中。与之前发表的数据一致,我们的生物学实验表明,CHIKV HVD 与 CD2AP 和 FHL1 的相互作用对 CHIKV 复制效率具有累加效应。这项研究表明,CHIKV 突变体中对 FHL1 或 FHL1 和 CD2AP 结合位点的广泛修饰仍然具有活力,并在多种细胞类型中发展为扩散性感染。我们的研究还表明,FHL 家族的其他成员可以与 CHIKV HVD 结合,因此可能参与病毒复制。基孔肯雅热病毒(CHIKV)的复制由广泛的宿主因子决定。以前,我们已经证明 CHIKV nsP3 的超变区(HVD)包含线性基序,这些基序将特定的宿主蛋白家族募集到功能性病毒复制复合物中。现在,我们使用基于 NMR 的结构和生物学方法,对细胞 FHL1 蛋白在 CHIKV HVD 中的结合位点进行了表征,并定义了这种相互作用的生物学意义。与先前描述的 G3BP 与 CHIKV HVD 的结合相反,FHL1-HVD 相互作用不是病毒复制的必要条件。然而,FHL1 的存在对 CHIKV 感染力有刺激作用,随后感染传播。在 CHIKV HVD 中发现 FHL1 和 CD2AP 蛋白具有重叠的结合位点,并且具有加性的促病毒功能。在 nsP3 HVD 中消除 FHL1 结合位点可用于开发稳定的减毒疫苗候选物。

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