PLoS Pathogens | |
Rhabdovirus Matrix Protein Structures Reveal a Novel Mode of Self-Association | |
Raymond J. Owens1  Stephen C. Graham1  Anil Verma1  Jonathan M. Grimes1  David I. Stuart1  René Assenberg1  Alireza Gholami2  Olivier Delmas2  Chiraz Talbi2  Hervé Bourhy2  | |
[1] Division of Structural Biology and Oxford Protein Production Facility, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, United Kingdom;UPRE Lyssavirus Dynamics and Host Adaptation, WHO Collaborating Centre for Reference and Research on Rabies, Institut Pasteur, Paris, France | |
关键词: Vesicular stomatitis virus; Protein interactions; Sequence motif analysis; Viral structure; Cell membranes; Crystals; Lyssavirus; Protein structure; | |
DOI : 10.1371/journal.ppat.1000251 | |
学科分类:生物科学(综合) | |
来源: Public Library of Science | |
【 摘 要 】
The matrix (M) proteins of rhabdoviruses are multifunctional proteins essential for virus maturation and budding that also regulate the expression of viral and host proteins. We have solved the structures of M from the vesicular stomatitis virus serotype New Jersey (genus: Vesiculovirus) and from Lagos bat virus (genus: Lyssavirus), revealing that both share a common fold despite sharing no identifiable sequence homology. Strikingly, in both structures a stretch of residues from the otherwise-disordered N terminus of a crystallographically adjacent molecule is observed binding to a hydrophobic cavity on the surface of the protein, thereby forming non-covalent linear polymers of M in the crystals. While the overall topology of the interaction is conserved between the two structures, the molecular details of the interactions are completely different. The observed interactions provide a compelling model for the flexible self-assembly of the matrix protein during virion morphogenesis and may also modulate interactions with host proteins.
【 授权许可】
CC BY
【 预 览 】
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