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过氧亚硝酸盐氧化半胱氨酸的机制:综合实验和理论研究。

Mechanism of cysteine oxidation by peroxynitrite: An integrated experimental and theoretical study.

机构信息

Departamento de Química Inorgánica, Analítica y Química-Física and INQUIMAE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina.

出版信息

Arch Biochem Biophys. 2013 Nov 1;539(1):81-6. doi: 10.1016/j.abb.2013.08.016. Epub 2013 Sep 4.

Abstract

Since peroxynitrite was identified as a pathophysiological agent it has been implicated in a great variety of cellular processes. Particularly, peroxynitrite mediated oxidation of cellular thiol-containing compounds such as Cys residues, is a key event which has been extensively studied. Although great advances have been accomplished, the reaction is not completely understood at the atomic level. Aiming to shed light on this subject, we present an integrated kinetic and theoretical study of the oxidation of free Cys by peroxynitrite. We determined pH-independent thermodynamic activation parameters, namely those corresponding to the reaction between the reactive species: Cys thiolate and peroxynitrous acid. We found a pH-independent activation energy of 8.2 ± 0.6 kcal/mol. Simulations were performed using state of the art hybrid quantum-classical (QM-MM) molecular dynamics simulations. Our results are consistent with a SN2 mechanism, with Cys sulfenic acid and nitrite anion as products. The activation barrier is mostly due to the alignment of sulfur's thiolate atom with the oxygen atoms of the peroxide, along with the concomitant charge reorganization and important changes in the solvation profile. This work provides an atomic detailed description of the reaction mechanism and a framework to understand the environment effects on peroxynitrite reactivity with protein thiols.

摘要

自从过氧亚硝酸盐被确定为一种病理生理学试剂以来,它已经涉及到各种细胞过程。特别是,过氧亚硝酸盐介导的含巯基细胞化合物的氧化,如半胱氨酸残基,是一个已经被广泛研究的关键事件。尽管已经取得了很大的进展,但在原子水平上,该反应还没有完全被理解。为了阐明这一问题,我们对过氧亚硝酸盐氧化游离半胱氨酸进行了综合的动力学和理论研究。我们确定了 pH 独立的热力学激活参数,即对应于反应活性物质之间的反应:半胱氨酸硫醇盐和过氧亚硝酸。我们发现 pH 独立的活化能为 8.2 ± 0.6 kcal/mol。使用最先进的混合量子经典(QM-MM)分子动力学模拟进行了模拟。我们的结果与 SN2 机制一致,产物为半胱氨酸亚磺酸和亚硝酸根阴离子。活化势垒主要是由于硫的硫醇原子与过氧化物的氧原子的对齐,以及伴随的电荷重组和重要的溶剂化轮廓变化。这项工作提供了对反应机制的原子详细描述,并为理解环境对过氧亚硝酸盐与蛋白质巯基反应性的影响提供了一个框架。

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