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靶向pp150被膜蛋白与小衣壳蛋白之间相互作用的结构导向诱变鉴定出五个致死性和两个减毒活的人巨细胞病毒突变体。

Structure-Guided Mutagenesis Targeting Interactions between pp150 Tegument Protein and Small Capsid Protein Identify Five Lethal and Two Live Attenuated HCMV Mutants.

作者信息

Stevens Alex, Cruz-Cosme Ruth, Armstrong Najealicka, Tang Qiyi, Zhou Z Hong

出版信息

bioRxiv. 2024 Apr 5:2024.01.22.576707. doi: 10.1101/2024.01.22.576707.

Abstract

Human cytomegalovirus (HCMV) replication relies on a nucleocapsid coat of the 150kDa, subfamily-specific tegument phosphoprotein (pp150) to regulate cytoplasmic virion maturation. While recent structural studies revealed pp150-capsid interactions, the role of specific amino-acids involved in these interactions have not been established experimentally. In this study, pp150 and the small capsid protein (SCP), one of pp150's binding partners found atop the major capsid protein (MCP), were subjected to mutational and structural analyses. Mutations to clusters of polar or hydrophobic residues along the pp150-SCP interface abolished viral replication, with no replication detected in mutant virus-infected cells. Notably, a single point mutation at the pp150-MCP interface significantly attenuated viral replication, unlike the situation of pp150-deletion mutation where capsids degraded outside host nuclei. These functionally significant mutations targeting pp150-capsid interactions, particularly the pp150 K255E replication-attenuated mutant, can be explored to overcome the historical challenges of developing effective antivirals and vaccines against HCMV infection.

摘要

人类巨细胞病毒(HCMV)的复制依赖于150kDa的核衣壳包膜,即亚家族特异性被膜磷蛋白(pp150),以调节细胞质中病毒粒子的成熟。虽然最近的结构研究揭示了pp150与衣壳的相互作用,但参与这些相互作用的特定氨基酸的作用尚未通过实验确定。在本研究中,对pp150及其结合伴侣之一、位于主要衣壳蛋白(MCP)之上的小衣壳蛋白(SCP)进行了突变和结构分析。沿着pp150-SCP界面的极性或疏水残基簇发生突变会导致病毒复制停止,在突变病毒感染的细胞中未检测到复制。值得注意的是,与衣壳在宿主细胞核外降解的pp150缺失突变情况不同,pp150-MCP界面的单点突变显著减弱了病毒复制。针对pp150与衣壳相互作用的这些具有功能意义的突变,特别是pp150 K255E复制减弱突变体,可用于探索克服开发针对HCMV感染的有效抗病毒药物和疫苗所面临的历史挑战。

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