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与特定纳米抗体复合的非结构蛋白9的结构表征确定了猪繁殖与呼吸综合征病毒复制中涉及的两个重要残基。

Structural Characterization of Non-structural Protein 9 Complexed With Specific Nanobody Pinpoints Two Important Residues Involved in Porcine Reproductive and Respiratory Syndrome Virus Replication.

作者信息

Wang Yan, Li Rui, Qiao Songlin, Wang Jiaxi, Liu Hongliang, Li Zhijun, Ma Hongfang, Yang Lei, Ruan Haiyu, Weng Maoyang, Hiscox Julian A, Stewart James P, Nan Yuchen, Zhang Gaiping, Zhou En-Min

机构信息

Department of Preventive Veterinary Medicine, College of Veterinary Medicine, Northwest A&F University, Yangling, China.

Key Laboratory of Animal Immunology of the Ministry of Agriculture, Henan Provincial Key Laboratory of Animal Immunology, Henan Academy of Agricultural Sciences, Zhengzhou, China.

出版信息

Front Microbiol. 2020 Nov 12;11:581856. doi: 10.3389/fmicb.2020.581856. eCollection 2020.

Abstract

Porcine reproductive and respiratory syndrome (PRRS), caused by PRRS virus (PRRSV), is a widespread viral disease that has led to huge economic losses for the global swine industry. Non-structural protein 9 (Nsp9) of PRRSV possesses essential RNA-dependent RNA polymerase (RdRp) activity for viral RNA replication. Our previous report showed that Nsp9-specific nanobody, Nb6, was able to inhibit PRRSV replication. In this study, recombinant Nsp9 and Nsp9-Nb6 complex were prepared then characterized using bio-layer interferometry (BLI) and dynamic light scattering (DLS) analyses that demonstrated high-affinity binding of Nb6 to Nsp9 to form a homogeneous complex. Small-angle X-ray scattering (SAXS) characterization analyses revealed that spatial interactions differed between Nsp9 and Nsp9-Nb6 complex molecular envelopes. Enzyme-linked immunosorbent assays (ELISAs) revealed key involvement of Nsp9 residues Ile588, Asp590, and Leu643 and Nb6 residues Tyr62, Trp105, and Pro107 in the Nsp9-Nb6 interaction. After reverse genetics-based techniques were employed to generate recombinant Nsp9 mutant viruses, virus replication efficiencies were assessed in MARC-145 cells. The results revealed impaired viral replication of recombinant viruses bearing I588A and L643A mutations as compared with replication of wild type virus, as evidenced by reduced negative-strand genomic RNA [(-) gRNA] synthesis and attenuated viral infection. Moreover, the isoleucine at position 588 of Nsp9 was conserved across PRRSV genotypes. In conclusion, structural analysis of the Nsp9-Nb6 complex revealed novel amino acid interactions involved in viral RNA replication that will be useful for guiding development of structure-based anti-PRRSV agents.

摘要

猪繁殖与呼吸综合征(PRRS)由猪繁殖与呼吸综合征病毒(PRRSV)引起,是一种广泛传播的病毒性疾病,给全球养猪业造成了巨大经济损失。PRRSV的非结构蛋白9(Nsp9)具有病毒RNA复制所必需的RNA依赖性RNA聚合酶(RdRp)活性。我们之前的报告表明,Nsp9特异性纳米抗体Nb6能够抑制PRRSV复制。在本研究中,制备了重组Nsp9和Nsp9-Nb6复合物,然后使用生物层干涉术(BLI)和动态光散射(DLS)分析对其进行表征,结果表明Nb6与Nsp9具有高亲和力结合,形成了均匀的复合物。小角X射线散射(SAXS)表征分析表明,Nsp9和Nsp9-Nb6复合物分子包膜之间的空间相互作用不同。酶联免疫吸附测定(ELISA)显示,Nsp9的Ile588、Asp590和Leu643残基以及Nb6的Tyr62、Trp105和Pro107残基在Nsp9-Nb6相互作用中起关键作用。在采用基于反向遗传学的技术产生重组Nsp9突变病毒后,在MARC-145细胞中评估了病毒复制效率。结果显示,与野生型病毒复制相比,携带I588A和L643A突变的重组病毒的病毒复制受损,这可通过负链基因组RNA [(-)gRNA]合成减少和病毒感染减弱来证明。此外,Nsp9第588位的异亮氨酸在PRRSV各基因型中保守。总之,Nsp9-Nb6复合物的结构分析揭示了参与病毒RNA复制的新氨基酸相互作用,这将有助于指导基于结构的抗PRRSV药物的开发。

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