Human cytomegalovirus (HCMV) replication relies on a nucleocapsid coat of the 150Â kDa, 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 amino acid mutation (pp150Â K255E) at the pp150-MCP interface significantly attenuated viral replication, unlike in pp150-deletion mutants where capsids degraded outside host nuclei. These functionally significant mutations targeting pp150-capsid interactions, particularly the pp150Â K255E replication-attenuated mutant, can be explored to overcome the historical challenges of developing effective antivirals and vaccines against HCMV infection.
Structure-guided mutagenesis targeting interactions between pp150 tegument protein and small capsid protein identify five lethal and two live-attenuated HCMV mutants.
以 pp150 被膜蛋白和小衣壳蛋白之间的相互作用为靶点的结构引导诱变,鉴定出 5 个致死性 HCMV 突变体和 2 个减毒活突变体
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作者:Stevens Alexander, Cruz-Cosme Ruth, Armstrong Najealicka, Tang Qiyi, Zhou Z Hong
| 期刊: | Virology | 影响因子: | 2.400 |
| 时间: | 2024 | 起止号: | 2024 Aug;596:110115 |
| doi: | 10.1016/j.virol.2024.110115 | 研究方向: | 免疫/内分泌 |
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