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Just three water molecules can trigger the undesired nonenzymatic reactions of aspartic acid residues: new insight from a quantum-chemical study

机译:只有三种水分子可以引发天冬氨酸残留物的不期望的非酶反应:来自量子化学研究的新洞察力

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Aspartic acid (Asp) residues in peptides and proteins (L-Asp) can undergo spontaneous, nonenzymatic reactions under physiological conditions by which abnormal L-β-Asp,D-Asp,and/or D-β-Asp residues are formed. These altered Asp residues may affect the three-dimensional structures of the peptides and proteins and hence their properties and functions. In fact, the altered Asp residues are relevant to age-related diseases such as cataract and Alzheimer's disease. Most of the above reactions of the L-Asp residue proceed via a cyclic succinimide intermediate. In this paper, I propose a detailed mechanism of cyclization of an Asp residue (forming a precursor of the succinimide) by the B3LYP/6-31+G(d,p) density functional theory calculations carried out for a small Asp-containing model compound complexed with three water molecules which act as general acid-base catalysts in proton transfers. In the proposed mechanism, the amide group on the C-terminal side of the Asp residue is first converted to the tautomeric iminol form. Then, successive reorientation of a water molecule and conformational change occur followed by the nucleophilic attack of the iminol nitrogen atom on the carboxyl carbon atom of the Asp side chain to form a five-membered ring. A satisfactory agreement was obtained between the calculated and experimental energetics.
机译:在肽和蛋白质(L-ASP)中的天冬氨酸(ASP)残留物可以在形成异常的L-β-ASP,D-ASP和/或D-β-ASP残基的生理条件下发生自发的非酶反应。这些改变的ASP残基可能影响肽和蛋白质的三维结构,从而影响它们的性质和功能。事实上,改变的ASP残基与年龄相关的疾病如白内障和阿尔茨海默病有关。 L-ASP残余物的大多数上述反应通过环状琥珀酰亚胺中间体进行。在本文中,我提出了通过B3Lyp / 6-31 + G(D,P)密度泛函理论计算的B3Lyp / 6-31 + G(D,P)密度函数理论计算的详细机制用三种水分子复合,其用作质子转移中的一般酸碱催化剂。在所提出的机制中,首先将ASP残余物的C末端侧的酰胺基转化为互变异构甲醇形式。然后,发生水分子的连续重新定位和构象变化,然后发生伊米诺酚氮原子对ASP侧链的羧基碳原子的亲核侵蚀,以形成五元环。计算和实验性能之间获得了令人满意的协议。

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