Plum Island Animal Disease Center, ARS, USDA, Greenport, NY 11944, USA.
Biofisika Institute, University of the Basque Country (CSIC-UPV/EHU), 48940 Leioa, Spain.
Viruses. 2018 Aug 28;10(9):460. doi: 10.3390/v10090460.
We have previously shown that Classical Swine Fever Virus (CSFV) p7 is an essential nonstructural protein with a viroporin activity, a critical function in the progression of virus infection. We also identified p7 domains and amino acid residues critical for pore formation. Here, we describe how p7 specifically interacts with host protein CAMLG, an integral ER transmembrane protein involved in intracellular calcium release regulation and signal response generation. Detection of interaction as well as the identification of p7 areas mediating interaction with CAMLG was performed by yeast two-hybrid. p7-CAMLG interaction was further confirmed by confocal microscopy in eukaryotic cells, co-expressing both proteins. Mutant forms of p7 having substituted native residues identified as mediating interaction with CAMLG showed a decreased co-localization compared with the native forms of p7. Furthermore, it is shown that native p7, but not the mutated forms of p7 that fail to interact with CAMLG, efficiently mediates calcium permeability in the ER. Interestingly, viruses harboring some of those mutated forms of p7 have been previously shown to have a significantly decreased virulence in swine.
我们之前已经表明,猪瘟病毒(Classical Swine Fever Virus,CSFV)的 p7 蛋白是一种必需的非结构蛋白,具有病毒孔蛋白活性,这是病毒感染进展过程中的关键功能。我们还确定了 p7 形成孔所必需的结构域和氨基酸残基。在这里,我们描述了 p7 如何与宿主蛋白 CAMLG 特异性相互作用,CAMLG 是一种完整的内质网跨膜蛋白,参与细胞内钙释放调节和信号反应的产生。通过酵母双杂交检测到相互作用以及 p7 与 CAMLG 相互作用的介导区域。通过共表达两种蛋白质的真核细胞中的共聚焦显微镜进一步证实了 p7-CAMLG 相互作用。与介导与 CAMLG 相互作用的天然残基相比,具有取代天然残基的 p7 突变体形式的相互作用明显减少。此外,还表明天然 p7 而不是不能与 CAMLG 相互作用的突变形式的 p7 有效地介导内质网中的钙通透性。有趣的是,以前已经表明,携带这些突变形式之一的病毒在猪中的毒力显著降低。