Zhang Xing, Patel Avnish, Celma Cristina C, Yu Xuekui, Roy Polly, Zhou Z Hong
California NanoSystems Institute, University of California, Los Angeles (UCLA), Los Angeles, California, USA.
Department of Pathogen Molecular Biology, London School of Hygiene and Tropical Medicine, London, UK.
Nat Struct Mol Biol. 2016 Jan;23(1):74-80. doi: 10.1038/nsmb.3134. Epub 2015 Dec 7.
Viruses sense environmental cues such as pH to engage in membrane interactions for cell entry during infection, but how nonenveloped viruses sense pH is largely undefined. Here, we report both high- and low-pH structures of bluetongue virus (BTV), which enters cells via a two-stage endosomal process. The receptor-binding protein VP2 possesses a zinc finger that may function to maintain VP2 in a metastable state and a conserved His866, which senses early-endosomal pH. The membrane-penetration protein VP5 has three domains: dagger, unfurling and anchoring. Notably, the β-meander motif of the anchoring domain contains a histidine cluster that can sense late-endosomal pH and also possesses four putative membrane-interaction elements. Exposing BTV to low pH detaches VP2 and dramatically refolds the dagger and unfurling domains of VP5. Our biochemical and structure-guided-mutagenesis studies support these coordinated pH-sensing mechanisms.
病毒能够感知诸如pH值等环境线索,以便在感染过程中通过与膜相互作用进入细胞,但无包膜病毒如何感知pH值在很大程度上尚不清楚。在此,我们报告了蓝舌病毒(BTV)在高pH值和低pH值条件下的结构,该病毒通过两阶段内体过程进入细胞。受体结合蛋白VP2拥有一个锌指,其可能起到将VP2维持在亚稳态的作用,以及一个保守的His866,它能够感知早期内体的pH值。膜穿透蛋白VP5有三个结构域:匕首结构域、展开结构域和锚定结构域。值得注意的是,锚定结构域的β-曲折基序包含一个组氨酸簇,其可以感知晚期内体的pH值,并且还拥有四个假定的膜相互作用元件。将BTV暴露于低pH值会使VP2脱离,并使VP5的匕首结构域和展开结构域发生显著重折叠。我们的生化研究和基于结构的诱变研究支持了这些协同的pH值感知机制。