The herpes simplex virus procapsid: Structure, conformational changes upon maturation, and roles of the triplex proteins VP19c and VP23 in assembly

被引:196
作者
Trus, BL
Booy, FP
Newcomb, WW
Brown, JC
Homa, FL
Thomsen, DR
Steven, AC
机构
[1] NIAMS,STRUCT BIOL LAB,NIH,BETHESDA,MD 20892
[2] NIH,COMPUTAT BIOSCI & ENGN LAB,DCRT,BETHESDA,MD 20892
[3] UNIV VIRGINIA,HLTH SCI CTR,DEPT MICROBIOL,CHARLOTTESVILLE,VA 22908
[4] UNIV VIRGINIA,HLTH SCI CTR,CTR CANC,CHARLOTTESVILLE,VA 22908
[5] PHARMACIA & UPJOHN INC,MOL BIOL RES,KALAMAZOO,MI 49001
关键词
herpes simplex virus; capsid assembly; cryo-electron microscopy; conformational changes; assembly scaffold;
D O I
10.1016/S0022-2836(96)80018-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The proteins coded by the five major capsid genes of herpes simplex virus 1, VP5 (gene UL19), VP19c (UL38), VP23 (UL18), pre-VP22a (UL26.5), and pre-VP21 (UL26), assemble into fragile roundish ''procapsids'', which mature into robust polyhedral capsids in a transition similar to that undergone by bacteriophage proheads. Here we describe the HSV-1 procapsid structure to a resolution of similar to 2.7 nm from three-dimensional reconstructions of cryo-electron micrographs. Comparison with the mature capsid provides insight into the large-scale conformational changes that take place upon maturation. In the procapsid, the elongated protomers (VP5 subunits) make little contact with each other except around the bases of the herons and pentons, whereas they are tightly clustered into capsomers in the mature state; the axial channels, which are constricted or blocked in the mature capsid, are fully open; and unlike the well observed 6-fold symmetry of mature herons, procapsid herons are distorted into oval and triangular shapes. These deformations reveal a VP5 domain in the inner part of the protrusion wall which participates in inter-protomer bonding in the procapsid and is close to the site where the channel closes upon maturation. Remarkably, there are no direct contacts between neighboring capsomers; instead, interactions between them are mediated by the ''triplexes'' at the sites of local 3-fold symmetry. This observation discloses the mechanism whereby the tripler proteins, VP19c and VP23, play their essential roles in capsid morphogenesis. In the mature capsid, density extends continuously between neighboring capsomers in the inner ''floor'' layer. In contrast, there are large gaps in the corresponding region of the procapsid, implying that formation of the floor involves extensive remodeling. Inside the procapsid shell is the hollow spherical scaffold, whose radial density profile indicates that the major scaffold protein, pre-VP22a, is a long molecule (>24 nm) composed of three domains. Since no evidence of icosahedral symmetry is detected in the scaffold, we infer that (unless higher resolution is required) the scaffold may not be an icosahedral shell but may instead be a protein micelle with a preferred radius of curvature. (C) 1996 Academic Press Limited
引用
收藏
页码:447 / 462
页数:16
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