Graham Stephen C, Assenberg René, Delmas Olivier, Verma Anil, Gholami Alireza, Talbi Chiraz, Owens Raymond J, Stuart David I, Grimes Jonathan M, Bourhy Hervé
Division of Structural Biology and Oxford Protein Production Facility, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK.
PLoS Pathog. 2008 Dec;4(12):e1000251. doi: 10.1371/journal.ppat.1000251. Epub 2008 Dec 26.
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.
弹状病毒的基质(M)蛋白是病毒成熟和出芽所必需的多功能蛋白,还可调节病毒蛋白和宿主蛋白的表达。我们解析了水疱性口炎病毒新泽西血清型(属:水疱病毒属)和拉各斯蝙蝠病毒(属:狂犬病毒属)的M蛋白结构,结果显示尽管二者没有可识别的序列同源性,但都具有共同的折叠结构。引人注目的是,在这两种结构中,均观察到来自晶体学上相邻分子原本无序的N端的一段残基与该蛋白表面的疏水腔结合,从而在晶体中形成M蛋白的非共价线性聚合物。虽然两种结构之间相互作用的整体拓扑结构是保守的,但相互作用的分子细节却完全不同。观察到的相互作用为病毒粒子形态发生过程中基质蛋白的灵活自组装提供了一个令人信服的模型,也可能调节与宿主蛋白的相互作用。