衣壳
病毒性表皮
水痘带状疱疹病毒
病毒学
病毒
蛋白质亚单位
生物
低温电子显微
类病毒颗粒
生物物理学
帽状体
细胞生物学
化学
基因
遗传学
重组DNA
作者
Wei Wang,Qingbing Zheng,Dequan Pan,Hai Yu,Wenkun Fu,Jian Liu,Maozhou He,Rui Zhu,Cai Yu-ze,Yang Huang,Zhenghui Zha,Zhenqin Chen,Xiangzhong Ye,Jinle Han,Yuqiong Que,Ting Wu,Jun Zhang,Shaowei Li,Hua Zhu,Z. Hong Zhou,Tong Cheng,Ningshao Xia
出处
期刊:Nature microbiology
日期:2020-09-07
卷期号:5 (12): 1542-1552
被引量:12
标识
DOI:10.1038/s41564-020-0785-y
摘要
Varicella-zoster virus (VZV) is a medically important human herpesvirus that causes chickenpox and shingles, but its cell-associated nature has hindered structure studies. Here we report the cryo-electron microscopy structures of purified VZV A-capsid and C-capsid, as well as of the DNA-containing capsid inside the virion. Atomic models derived from these structures show that, despite enclosing a genome that is substantially smaller than those of other human herpesviruses, VZV has a similarly sized capsid, consisting of 955 major capsid protein (MCP), 900 small capsid protein (SCP), 640 triplex dimer (Tri2) and 320 triplex monomer (Tri1) subunits. The VZV capsid has high thermal stability, although with relatively fewer intra- and inter-capsid protein interactions and less stably associated tegument proteins compared with other human herpesviruses. Analysis with antibodies targeting the N and C termini of the VZV SCP indicates that the hexon-capping SCP—the largest among human herpesviruses—uses its N-terminal half to bridge hexon MCP subunits and possesses a C-terminal flexible half emanating from the inner rim of the upper hexon channel into the tegument layer. Correlation of these structural features and functional observations provide insights into VZV assembly and pathogenesis and should help efforts to engineer gene delivery and anticancer vectors based on the currently available VZV vaccine. Cryo-electron microscopy structures of three varicella-zoster virus (VZV) capsids show VZV-specific features of the capsid-associated tegument complex (CATC) and genome packaging. The authors conclude that the VZV capsid is less stable and the CATC binds more weakly than in the homologues in other herpesviruses, characteristics that are linked to the small genome size of VZV.
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