Gerard Francine C A, Ribeiro Euripedes de Almeida, Albertini Aurélie A V, Gutsche Irina, Zaccai Guiseppe, Ruigrok Rob W H, Jamin Marc
Unit of Virus Host Cell Interactions, UMR 5233 UJF-EMBL-CNRS, 6 rue Jules Horowitz, 38042 Grenoble Cedex 9, France.
Biochemistry. 2007 Sep 11;46(36):10328-38. doi: 10.1021/bi7007799. Epub 2007 Aug 17.
The phosphoprotein (P) is an essential component of the replication machinery of rabies virus (RV) and vesicular stomatitis virus (VSV), and the oligomerization of P, potentially controlled by phosphorylation, is required for its function. Up to now the stoichiometry of phosphoprotein oligomers has been controversial. Size exclusion chromatography combined with detection by multiangle laser light scattering shows that the recombinant unphosphorylated phosphoproteins from VSV and from RV exist as dimers in solution. Hydrodynamic analysis indicates that the dimers are highly asymmetric, with a Stokes radius of 4.8-5.3 nm and a frictional ratio larger than 1.7. Small-angle neutron scattering experiments confirm the dimeric state and the asymmetry of the structure and yield a radius of gyration of about 5.3 nm and a cross-sectional radius of gyration of about 1.6-1.8 nm. Similar hydrodynamic properties and molecular dimensions were obtained with a variant of VSV phosphoprotein in which Ser60 and Thr62 are substituted by Asp residues and which has been reported previously to mimic phosphorylation by inducing oligomerization and activating transcription. Here, we show that this mutant also forms a dimer with hydrodynamic properties and molecular dimensions similar to those of the wild type protein. However, incubation at 30 degrees C for several hours induced self-assembly of both wild type and mutant proteins, leading to the formation of irregular filamentous structures.
磷蛋白(P)是狂犬病病毒(RV)和水疱性口炎病毒(VSV)复制机制的重要组成部分,P的寡聚化可能受磷酸化控制,是其发挥功能所必需的。到目前为止,磷蛋白寡聚体的化学计量一直存在争议。尺寸排阻色谱结合多角度激光散射检测表明,来自VSV和RV的重组未磷酸化磷蛋白在溶液中以二聚体形式存在。流体动力学分析表明,这些二聚体高度不对称,斯托克斯半径为4.8 - 5.3 nm,摩擦比大于1.7。小角中子散射实验证实了二聚体状态和结构的不对称性,并得出回转半径约为5.3 nm,横截面回转半径约为1.6 - 1.8 nm。用VSV磷蛋白的一个变体也获得了类似的流体动力学性质和分子尺寸,其中Ser60和Thr62被Asp残基取代,并且先前已报道该变体通过诱导寡聚化和激活转录来模拟磷酸化。在这里,我们表明该突变体也形成了一种二聚体,其流体动力学性质和分子尺寸与野生型蛋白相似。然而,在30℃孵育数小时会诱导野生型和突变型蛋白的自组装,导致形成不规则的丝状结构。