Infection and Immunity Program & Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton, Victoria, Australia.
Griffith Institute for Drug Discovery, Griffith University, Brisbane, Queensland, Australia.
J Biol Chem. 2021 Dec;297(6):101362. doi: 10.1016/j.jbc.2021.101362. Epub 2021 Oct 28.
The Nsp9 replicase is a conserved coronaviral protein that acts as an essential accessory component of the multi-subunit viral replication/transcription complex. Nsp9 is the predominant substrate for the essential nucleotidylation activity of Nsp12. Compounds specifically interfering with this viral activity would facilitate its study. Using a native mass-spectrometry-based approach to screen a natural product library for Nsp9 binders, we identified an ent-kaurane natural product, oridonin, capable of binding to purified SARS-CoV-2 Nsp9 with micromolar affinities. By determining the crystal structure of the Nsp9-oridonin complex, we showed that oridonin binds through a conserved site near Nsp9's C-terminal GxxxG-helix. In enzymatic assays, oridonin's binding to Nsp9 reduces its potential to act as substrate for Nsp12's Nidovirus RdRp-Associated Nucleotidyl transferase (NiRAN) domain. We also showed using in vitro cellular assays oridonin, while cytotoxic at higher doses has broad antiviral activity, reducing viral titer following infection with either SARS-CoV-2 or, to a lesser extent, MERS-CoV. Accordingly, these preliminary findings suggest that the oridonin molecular scaffold may have the potential to be developed into an antiviral compound to inhibit the function of Nsp9 during coronaviral replication.
Nsp9 复制酶是一种保守的冠状病毒蛋白,作为多亚基病毒复制/转录复合物的必需辅助成分发挥作用。Nsp9 是必需的 Nsp12 核苷酸化活性的主要底物。专门干扰这种病毒活性的化合物将有助于对其进行研究。我们使用基于天然质谱的方法筛选天然产物文库中的 Nsp9 结合物,鉴定出一种具有结合 SARS-CoV-2 Nsp9 的微摩尔亲和力的 ent-贝壳杉烷天然产物,冬凌草甲素。通过确定 Nsp9-冬凌草甲素复合物的晶体结构,我们表明冬凌草甲素通过 Nsp9 的 C 末端 GxxxG-螺旋附近的保守位点结合。在酶促测定中,冬凌草甲素与 Nsp9 的结合降低了其作为 Nsp12 的 Nidovirus RdRp-Associated Nucleotidyl transferase(NiRAN)结构域底物的潜力。我们还通过体外细胞测定表明,冬凌草甲素在较高剂量时具有细胞毒性,但具有广泛的抗病毒活性,可降低 SARS-CoV-2 或 MERS-CoV 感染后的病毒滴度。因此,这些初步发现表明,冬凌草甲素分子支架可能具有开发成一种抗病毒化合物的潜力,以抑制冠状病毒复制过程中 Nsp9 的功能。