The role of subunit hinges and molecular "switches" in the control of viral capsid polymorphism

被引:86
作者
Tang, JH
Johnson, JM
Dryden, KA
Young, MJ
Zlotnick, A
Johnson, JE
机构
[1] Scripps Res Inst, Dept Biol Mol, La Jolla, CA 92037 USA
[2] Univ Oklahoma, Hlth Sci Ctr, Dept Biochem & Mol Biol, Oklahoma City, OK 73190 USA
[3] Montana State Univ, Dept Plant Sci & Plant Pathol, Bozeman, MT 59717 USA
关键词
plant virus structure; virus assembly; particle polymorphisms; bromovirus; capsid assembly;
D O I
10.1016/j.jsb.2005.10.013
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 coat protein (CP) of cowpea chlorotic mottle virus assembles exclusively into a T = 3 capsid in vivo and, under proper conditions, in vitro. The N-terminal domain of CP has been implicated in proper assembly and was viewed as a required switch for mediating hexamer and pentamer formation in T = 3 assembly. We observed that a mutant CP lacking most of the N-terminal domain, N Delta 34, assembles, in vitro, into statistically predictable numbers of. native-like T = 3 capsids of 90 dimers; "T = 2" capsids of 60 dimers; T = 1 capsids of 30 dimers. We generated cryo-EM image reconstructions of each form and built pseudo-atomic models based on the subunits from the crystal structure of plant-derived T = 3 virus allowing a detailed comparison of stabilizing interactions in the three assemblies. The statistical nature of the distribution of assembly products and the observed structures indicates that the N-terminus of CP is not a switch that is required to form the proper ratio of hexamers and pentamers for T = 3 assembly; rather, it biases the direction of assembly to T = 3 particles from the possibilities available to N Delta 34 through flexible dimer hinges and variations in subunit contacts. Our results are consistent with a pentamer of dimers (PODs) nucleating assembly in all cases but subunit dimers can be added with different trajectories that favor specific T = 3 or T = 1 global particle geometries. Formation of the "T = 2" particles appears to be fundamentally different in that they not only nucleate with PODs, but assembly propagates by the addition of mostly, if not exclusively PODs generating an entirely new subunit interface in the process. These results show that capsid geometry is flexible and may readily adapt to new requirements as the virus evolves. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:59 / 67
页数:9
相关论文
共 20 条
[1]   STUDIES ON ASSEMBLY OF A SPHERICAL PLANT VIRUS .1. STATES OF AGGREGATION OF ISOLATED PROTEIN [J].
ADOLPH, KW ;
BUTLER, PJG .
JOURNAL OF MOLECULAR BIOLOGY, 1974, 88 (02) :327-&
[2]  
BANCROFT J B, 1970, P99, DOI 10.1016/S0065-3527(08)60022-6
[3]   FORMATION OF AN INFECTIOUS NUCLEOPROTEIN FROM PROTEIN AND NUCLEIC ACID ISOLATED FROM A SMALL SPHERICAL VIRUS [J].
BANCROFT, JB ;
HIEBERT, E .
VIROLOGY, 1967, 32 (02) :354-&
[4]   A STUDY OF SELF-ASSEMBLY PROCESS IN A SMALL SPHERICAL VIRUS - FORMATION OF ORGANIZED STRUCTURES FROM PROTEIN SUBUNITS IN VITRO [J].
BANCROFT, JB ;
HILLS, GJ ;
MARKHAM, R .
VIROLOGY, 1967, 31 (02) :354-&
[5]   Heterologous expression of the modified coat protein of Cowpea chlorotic mottle bromovirus results in the assembly of protein cages with altered architectures and function [J].
Brumfield, S ;
Willits, D ;
Tang, L ;
Johnson, JE ;
Douglas, T ;
Young, M .
JOURNAL OF GENERAL VIROLOGY, 2004, 85 :1049-1053
[6]   RESTRAINED REAL-SPACE MACROMOLECULAR ATOMIC REFINEMENT USING A NEW RESOLUTION-DEPENDENT ELECTRON-DENSITY FUNCTION [J].
CHAPMAN, MS .
ACTA CRYSTALLOGRAPHICA SECTION A, 1995, 51 :69-80
[7]   LIMITED HYDROLYSIS OF COWPEA CHLOROTIC MOTTLE VIRUS BY TRYPSIN AND CHYMOTRYPSIN [J].
CHIDLOW, J ;
TREMAINE, JH .
VIROLOGY, 1971, 43 (01) :267-&
[8]   Methods for reconstructing density maps of "single" particles from cryoelectron micrographs to subnanometer resolution [J].
Conway, JF ;
Steven, AC .
JOURNAL OF STRUCTURAL BIOLOGY, 1999, 128 (01) :106-118
[9]   Freedom and restraint: themes in virus capsid assembly [J].
Dokland, T .
STRUCTURE, 2000, 8 (08) :R157-R162
[10]   Model-based analysis of assembly kinetics for virus capsids or other spherical polymers [J].
Endres, D ;
Zlotnick, A .
BIOPHYSICAL JOURNAL, 2002, 83 (02) :1217-1230