Laboratory of Molecular Medicine, Children's Hospital, Boston, Massachusetts 02115, USA.
J Virol. 2010 Feb;84(4):1764-70. doi: 10.1128/JVI.01682-09. Epub 2009 Dec 9.
During rotavirus entry, a virion penetrates a host cell membrane, sheds its outer capsid proteins, and releases a transcriptionally active subviral particle into the cytoplasm. VP5, the rotavirus protein believed to interact with the membrane bilayer, is a tryptic cleavage product of the outer capsid spike protein, VP4. When a rotavirus particle uncoats, VP5 folds back, in a rearrangement that resembles the fusogenic conformational changes in enveloped-virus fusion proteins. We present direct experimental evidence that this rearrangement leads to membrane binding. VP5 does not associate with liposomes when mounted as part of the trypsin-primed spikes on intact virions, nor does it do so after it has folded back into a stably trimeric, low-energy state. But it does bind liposomes when they are added to virions before uncoating, and VP5 rearrangement is then triggered by addition of EDTA. The presence of liposomes during the rearrangement enhances the otherwise inefficient VP5 conformational change. A VP5 fragment, VP5CT, produced from monomeric recombinant VP4 by successive treatments with chymotrypsin and trypsin, also binds liposomes only when the proteolysis proceeds in their presence. A monoclonal antibody that neutralizes infectivity by blocking a postattachment entry event also blocks VP5 liposome association. We propose that VP5 binds lipid bilayers in an intermediate conformational state, analogous to the extended intermediate conformation of enveloped-virus fusion proteins.
在轮状病毒进入过程中,病毒粒子穿透宿主细胞膜,脱去其外壳蛋白,并将转录活性的亚病毒颗粒释放到细胞质中。VP5 是轮状病毒蛋白,被认为与膜双层相互作用,是外壳刺突蛋白 VP4 的胰蛋白酶切割产物。当轮状病毒粒子脱壳时,VP5 折叠回类似于包膜病毒融合蛋白融合构象变化的重排。我们提出了直接的实验证据,证明这种重排导致膜结合。当作为完整病毒粒子上的胰蛋白酶引发的刺突的一部分组装时,VP5 不会与脂质体结合,也不会在它折叠回稳定的三聚体、低能量状态后与脂质体结合。但是,当脂质体在脱壳之前添加到病毒粒子中时,它会与脂质体结合,然后通过添加 EDTA 触发 VP5 重排。在重排过程中存在脂质体增强了 VP5 构象变化的效率。通过用胰凝乳蛋白酶和胰蛋白酶连续处理从单体重组 VP4 产生的 VP5CT 片段,也仅在存在蛋白酶的情况下与脂质体结合。一种中和通过阻断附着后进入事件而产生的感染性的单克隆抗体也阻止了 VP5 与脂质体的结合。我们提出 VP5 以中间构象状态结合脂双层,类似于包膜病毒融合蛋白的延伸中间构象。