Unravelling the Stability and Capsid Dynamics of the Three Virions of Brome Mosaic Virus Assembled Autonomously In Vivo

Author:

Chakravarty Antara1,Reddy Vijay S.2,Rao A. L. N.1

Affiliation:

1. Department of Microbiology and Plant Pathology, University of California, Riverside, Riverside, California, USA

2. Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, California, USA

Abstract

The majority of viruses contain RNA genomes protected by a shell of capsid proteins. Although crystallographic studies show that viral capsids are static structures, accumulating evidence suggests that, in solution, virions are highly dynamic assemblies. The three genomic RNAs (RNA1, -2, and -3) and a single subgenomic RNA (RNA4) of Brome mosaic virus (BMV), an RNA virus pathogenic to plants, are distributed among three physically homogeneous virions. This study examines the thermal stability by differential scanning fluorimetry (DSF) and capsid dynamics by matrix-assisted laser desorption ionization–time of flight (MALDI-TOF) analyses following trypsin digestion of the three virions assembled separately in vivo using the Agrobacterium -mediated transient expression approach. The results provide compelling evidence that virions packaging genomic RNA1 and -2 are distinct from those copackaging RNA3 and -4 in their stability and dynamics, suggesting that RNA-dependent capsid dynamics play an important biological role in the viral life cycle.

Funder

University of California Research Initiatives

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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