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在马亚罗病毒nsP3高变域中鉴定一种非典型G3BP结合序列。

Identification of a non-canonical G3BP-binding sequence in a Mayaro virus nsP3 hypervariable domain.

作者信息

Neyret Aymeric, Bernard Eric, Aïqui-Reboul-Paviet Olivier, Bakhache William, Eldin Patrick, Chaloin Laurent, Briant Laurence

机构信息

Institut de Recherche en Infectiologie de Montpellier (IRIM), Université de Montpellier - CNRS, Montpellier, France.

出版信息

Front Cell Infect Microbiol. 2022 Aug 11;12:958176. doi: 10.3389/fcimb.2022.958176. eCollection 2022.

Abstract

Ras-GTPase-activating SH3 domain-binding-proteins 1 (G3BP1) and 2 (G3BP2) are multifunctional RNA-binding proteins involved in stress granule nucleation, previously identified as essential cofactors of Old World alphaviruses. They are recruited to viral replication complexes formed by the Chikungunya virus (CHIKV), Semliki Forest virus (SFV), and Sindbis virus (SINV) an interaction with a duplicated FGxF motif conserved in the hypervariable domain (HVD) of virus-encoded nsP3. According to mutagenesis studies, this FGxF duplication is strictly required for G3BP binding and optimal viral growth. Contrasting with this scenario, nsP3 encoded by Mayaro virus (MAYV), an arthritogenic virus grouped with Old World alphaviruses, contains a single canonical FGxF sequence. In light of this unusual feature, we questioned MAYV nsP3/G3BPs relationships. We report that G3BP1 and G3BP2 are both required for MAYV growth in human cells and bind nsP3 protein. In infected cells, they are recruited to nsP3-containing cytosolic foci and active replication complexes. Unexpectedly, deletion of the single FGxF sequence in MAYV nsP3 did not abolish these phenotypes. Using mutagenesis and modeling, we identify an upstream FGAP amino acid sequence as an additional MAYV nsP3/G3BP interaction motif required for optimal viral infectivity. These results, therefore, highlight a non-conventional G3BP binding sequence in MAYV nsP3.

摘要

Ras - GTP酶激活的SH3结构域结合蛋白1(G3BP1)和2(G3BP2)是多功能RNA结合蛋白,参与应激颗粒的形成,先前被鉴定为旧大陆甲病毒的必需辅助因子。它们被招募到由基孔肯雅病毒(CHIKV)、辛德毕斯病毒(SFV)和Semliki森林病毒(SINV)形成的病毒复制复合体中,通过与病毒编码的nsP3高变域(HVD)中保守的重复FGxF基序相互作用。根据诱变研究,这种FGxF重复对于G3BP结合和最佳病毒生长是严格必需的。与这种情况形成对比的是,马亚罗病毒(MAYV)(一种与旧大陆甲病毒归为一类的致关节炎病毒)编码的nsP3包含一个单一的典型FGxF序列。鉴于这一不寻常特征,我们对MAYV nsP3与G3BPs的关系提出疑问。我们报告称,G3BP1和G3BP2对于MAYV在人细胞中的生长都是必需的,并且能结合nsP3蛋白。在受感染的细胞中,它们被招募到含有nsP3的胞质病灶和活跃的复制复合体中。出乎意料的是,删除MAYV nsP3中的单个FGxF序列并没有消除这些表型。通过诱变和建模,我们确定上游FGAP氨基酸序列是最佳病毒感染性所需的另一个MAYV nsP3 / G3BP相互作用基序。因此,这些结果突出了MAYV nsP3中一个非常规的G3BP结合序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98a8/9403187/cdc40f4e1677/fcimb-12-958176-g001.jpg

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