Role of protein interactions in defining HIV-1 viral capsid shape and stability: a coarse-grained analysis

Update Item Information
Publication Type Manuscript
School or College College of Science
Department Chemistry
Creator Voth, Gregory Alan; Ayton, Gary S.
Other Author Krishna, Vinod
Title Role of protein interactions in defining HIV-1 viral capsid shape and stability: a coarse-grained analysis
Date 2010-01
Description Coarse-grained models of the HIV-1 CA dimer are constructed based on all-atom molecular dynamics simulations. Coarse-grained representations of the capsid shell, which is composed of approximately 1,500 copies of CA proteins, are constructed and their stability is examined. A key interaction between carboxyl and hexameric amino terminal domains is shown to generate the curvature of the capsid shell. It is demonstrated that variation of the strength of this interaction for different subunits in the lattice can cause formation of asymmetric conical shaped closed capsid shells, and it is proposed that variations in the structure of the additional carboxylamino terminal binding interface during self-assembly are important aspects of capsid cone formation. These results are in agreement with recent structural studies of the capsid hexamer subunit, which suggest that variability in the binding interface is a cause of the differences in subunit environments that exist in a conical structure.
Type Text
Publisher Elsevier
Journal Title Biophysical Journal
Volume 98
Issue 1
First Page 18
Last Page 26
DOI 10.1016/j.bpj.2009.09.049
citatation_issn 63495
Subject Virus capsid; HIV-1; Viral capsid shape; Coarse-graining; CA dimer
Subject LCSH Self-assembly (Chemistry); HIV (Viruses)
Language eng
Bibliographic Citation Krishna, V., Ayton, G. S., & Voth, G. A. (2010). Role of protein interactions in defining HIV-1 viral capsid shape and stability: a coarse-grained analysis. Biophysical Journal, 98 (1), 18-26.
Rights Management (c) Elsevier http://dx.doi.org/10.1016/j.bpj.2009.09.049
Format Medium application/pdf
Format Extent 879,033 bytes
Identifier ir-main,11768
ARK ark:/87278/s6q81xp9
Setname ir_uspace
ID 706521
Reference URL https://collections.lib.utah.edu/ark:/87278/s6q81xp9
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