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冠状病毒 Nsp15 内切酶对 RNA 切割的动力学分析:酸碱催化和底物依赖性金属离子激活的证据。

Kinetic analysis of RNA cleavage by coronavirus Nsp15 endonuclease: Evidence for acid-base catalysis and substrate-dependent metal ion activation.

机构信息

Department of Chemistry, University of Florida, Gainesville, Florida, USA.

Department of Chemistry, University of Florida, Gainesville, Florida, USA.

出版信息

J Biol Chem. 2023 Jun;299(6):104787. doi: 10.1016/j.jbc.2023.104787. Epub 2023 May 4.

Abstract

Understanding the functional properties of severe acute respiratory syndrome coronavirus 2 nonstructural proteins is essential for defining their roles in the viral life cycle, developing improved therapeutics and diagnostics, and countering future variants. Coronavirus nonstructural protein Nsp15 is a hexameric U-specific endonuclease whose functions, substrate specificity, mechanism, and dynamics are not fully defined. Previous studies report that Nsp15 requires Mn ions for optimal activity; however, the effects of divalent ions on Nsp15 reaction kinetics have not been investigated in detail. Here, we analyzed the single- and multiple-turnover kinetics for model ssRNA substrates. Our data confirm that divalent ions are dispensable for catalysis and show that Mn activates Nsp15 cleavage of two different ssRNA oligonucleotide substrates but not a dinucleotide. Biphasic kinetics of ssRNA substrates demonstrates that Mn stabilizes alternative enzyme states that have faster substrate cleavage on the enzyme. However, we did not detect Mn-induced conformational changes using CD and fluorescence spectroscopy. The pH-rate profiles in the presence and absence of Mn reveal active-site ionizable groups with similar pKs of ca. 4.8 to 5.2. An Rp stereoisomer phosphorothioate modification at the scissile phosphate had minimal effect on catalysis supporting a mechanism involving an anionic transition state. However, the Sp stereoisomer is inactive because of weak binding, consistent with models that position the nonbridging phosphoryl oxygen deep in the active site. Together, these data demonstrate that Nsp15 employs a conventional acid-base catalytic mechanism passing through an anionic transition state, and that divalent ion activation is substrate dependent.

摘要

了解严重急性呼吸综合征冠状病毒 2 非结构蛋白的功能特性对于确定它们在病毒生命周期中的作用、开发改进的治疗方法和诊断方法以及对抗未来的变异体至关重要。冠状病毒非结构蛋白 Nsp15 是一种六聚体 U 特异性内切核酸酶,其功能、底物特异性、机制和动力学尚未完全确定。先前的研究报告称,Nsp15 需要 Mn 离子才能发挥最佳活性;然而,尚未详细研究二价离子对 Nsp15 反应动力学的影响。在这里,我们分析了模型 ssRNA 底物的单轮和多轮周转动力学。我们的数据证实二价离子对催化是可有可无的,并表明 Mn 激活 Nsp15 切割两种不同的 ssRNA 寡核苷酸底物,但不能切割二核苷酸。ssRNA 底物的两相动力学表明,Mn 稳定了具有更快酶促底物切割的替代酶态。然而,我们没有使用 CD 和荧光光谱检测到 Mn 诱导的构象变化。存在和不存在 Mn 时的 pH 速率曲线揭示了活性位点可离子化基团的 pK 值约为 4.8 至 5.2,具有相似的 pK 值。在切割磷酸酯处的 Rp 立体异构硫代磷酸酯修饰对催化作用的影响最小,支持涉及阴离子过渡态的机制。然而,Sp 立体异构体是无活性的,因为结合较弱,这与将非桥接磷酸基氧深置于活性位点的模型一致。总之,这些数据表明 Nsp15 采用了传统的酸碱催化机制,通过阴离子过渡态进行,二价离子的激活取决于底物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/922d/10267533/cbc1321279f4/gr1.jpg

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