Xue Lu, Chang Tiancai, Gui Jiacheng, Li Zimu, Zhao Heyu, Zou Bingqian, Lu Junnan, Li Mei, Wen Xin, Gao Shenghua, Zhan Peng, Rong Lijun, Feng Liqiang, Gong Peng, He Jun, Chen Xinwen, Xiong Xiaoli
State Key Laboratory of Respiratory Disease, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, GIBH-CUHK Joint Research Laboratory on Stem Cell and Regenerative Medicine, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China.
Guangzhou Medical University, Guangzhou 511436, China.
Protein Cell. 2025 Feb 18. doi: 10.1093/procel/pwaf014.
Nipah virus (NiV) and related viruses form a distinct henipavirus genus within the Paramyxoviridae family. NiV continues to spillover into the humans causing deadly outbreaks with increasing human-bat interaction. NiV encodes the large protein (L) and phosphoprotein (P) to form the viral RNA polymerase machinery. Their sequences show limited homologies to those of non-henipavirus paramyxoviruses. We report two cryo-electron microscopy (cryo-EM) structures of the Nipah virus (NiV) polymerase L-P complex, expressed and purified in either its full-length or truncated form. The structures resolve the RNA-dependent RNA polymerase (RdRp) and polyribonucleotidyl transferase (PRNTase) domains of the L protein, as well as a tetrameric P protein bundle bound to the L-RdRp. L-protein C-terminal regions are unresolved, indicating flexibility. Two PRNTase domain zinc-binding sites, conserved in most Mononegavirales, are confirmed essential for NiV polymerase activity. The structures further reveal anchoring of the P protein bundle and P protein X domain (XD) linkers on L, via an interaction pattern distinct among Paramyxoviridae. These interactions facilitate binding of a P protein XD linker in the nucleotide entry channel and distinct positioning of other XD linkers. We show that the disruption of the L-P interactions reduces NiV polymerase activity. The reported structures should facilitate rational antiviral-drug discovery and provide a guide for the functional study of NiV polymerase.
尼帕病毒(NiV)及相关病毒在副粘病毒科内形成了一个独特的亨尼帕病毒属。随着人类与蝙蝠互动的增加,NiV不断传播给人类,引发致命疫情。NiV编码大蛋白(L)和磷蛋白(P)以形成病毒RNA聚合酶机制。它们的序列与非亨尼帕病毒副粘病毒的序列同源性有限。我们报告了尼帕病毒(NiV)聚合酶L-P复合物的两种冷冻电子显微镜(cryo-EM)结构,该复合物以全长或截短形式表达和纯化。这些结构解析了L蛋白的RNA依赖性RNA聚合酶(RdRp)和多聚核糖核苷酸转移酶(PRNTase)结构域,以及与L-RdRp结合的四聚体P蛋白束。L蛋白的C末端区域未解析,表明其具有灵活性。在大多数单股负链RNA病毒目中保守的两个PRNTase结构域锌结合位点,被证实对NiV聚合酶活性至关重要。这些结构进一步揭示了P蛋白束和P蛋白X结构域(XD)连接子通过副粘病毒科中独特的相互作用模式锚定在L上。这些相互作用促进了P蛋白XD连接子在核苷酸进入通道中的结合以及其他XD连接子的独特定位。我们表明,L-P相互作用的破坏会降低NiV聚合酶活性。所报道的结构应有助于合理的抗病毒药物发现,并为NiV聚合酶的功能研究提供指导。