Griffith Institute for Drug Discovery, Griffith University, Brisbane, QLD 4111, Australia.
Infection and Immunity Program & Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton 3800, Victoria, Australia.
J Nat Prod. 2023 Dec 22;86(12):2630-2637. doi: 10.1021/acs.jnatprod.3c00636. Epub 2023 Nov 22.
The search for effective antiviral agents against SARS-CoV-2 remains a critical global endeavor. In this study, we focused on the viral nucleocapsid protein Nsp9, which is a key player in viral RNA replication and an attractive drug target. Employing a two-pronged approach, an in-house natural product library was screened using native mass spectrometry to identify compounds capable of binding to Nsp9. From the initial screening, apart from the previously reported hit oridonin (protein binding ratio of 0.56 in the initial screening, = 7.2 ± 1.0 μM), we have identified a second Nsp9-interacting compound, the diterpenoid ryanodine, with a protein binding ratio of 0.3 and a of 48.05 ± 5.03 μM. To gain deeper insights into the binding interactions and to explore potential structural requirements, the collision-induced affinity selection mass spectrometry (CIAS-MS) approach allowed us to identify six known oridonin analogues produced by the plant , each with varying affinities to Nsp9. Native MS validation of their individual binding activities to Nsp9 revealed that all analogues exhibited reduced affinity compared to oridonin. Structural-activity relationship analysis highlighted key functional groups, including 1-OH, 6-OH, 7-OH, and the enone moiety, which are crucial for Nsp9 binding. Combined data from our native mass spectrometry and CIAS-MS approaches provide valuable insights into the molecular interactions between Nsp9 and these compounds.
寻找针对 SARS-CoV-2 的有效抗病毒药物仍然是一项全球性的关键任务。在这项研究中,我们专注于病毒核衣壳蛋白 Nsp9,它是病毒 RNA 复制的关键参与者,也是一个有吸引力的药物靶点。我们采用双管齐下的方法,使用天然质谱筛选内部天然产物库,以鉴定能够与 Nsp9 结合的化合物。从最初的筛选中,除了先前报道的化合物或冬凌草素(在初始筛选中的蛋白结合比为 0.56,IC50 为 7.2±1.0 μM)外,我们还鉴定出了第二种与 Nsp9 相互作用的化合物,二萜类化合物 Ryanodine,其蛋白结合比为 0.3,IC50 为 48.05±5.03 μM。为了更深入地了解结合相互作用并探索潜在的结构要求,碰撞诱导亲和力选择质谱(CIAS-MS)方法使我们能够鉴定出植物中产生的六种已知的冬凌草素类似物,每种类似物与 Nsp9 的亲和力不同。对它们各自与 Nsp9 结合活性的天然 MS 验证表明,所有类似物与冬凌草素相比亲和力均降低。结构-活性关系分析强调了关键的功能基团,包括 1-OH、6-OH、7-OH 和烯酮部分,这些基团对于 Nsp9 结合至关重要。我们的天然质谱和 CIAS-MS 方法的综合数据为 Nsp9 与这些化合物之间的分子相互作用提供了有价值的见解。