首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Dipeptide hydrolysis by the dinuclear zinc enzyme human renal dipeptidase: Mechanistic insights from DFT calculations
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Dipeptide hydrolysis by the dinuclear zinc enzyme human renal dipeptidase: Mechanistic insights from DFT calculations

机译:双核锌酶人肾二肽酶水解二肽:DFT计算的机理见解

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The reaction mechanism of the dinuclear zinc enzyme human renal dipeptidase is investigated using hybrid density functional theory. This enzyme catalyzes the hydrolysis of dipeptides and beta-lactam antibiotics. Two different protonation states in which the important active site residue Asp288 is either neutral or ionized were considered. In both cases, the bridging hydroxide is shown to be capable of performing the nucleophilic attack on the substrate carbonyl carbon from its bridging position, resulting in the formation of a tetrahedral intermediate. This step is followed by protonation of the dipeptide nitrogen, coupled with C-N bond cleavage. The calculations establish that both cases have quite feasible energy barriers. When the Asp288 is neutral, the hydrolytic reaction occurs with a large exothermicity. However, the reaction becomes very close to thermoneutral with an ionized Asp288. The two zinc ions are shown to play different roles in the reaction. Zn1 binds the amino group of the substrate, and Zn2 interacts with the carboxylate group of the substrate, helping in orienting it for the nucleophilic attack. In addition, Zn2 stabilizes the oxyanion of the tetrahedral intermediate, thereby facilitating the nucleophilic attack.
机译:利用杂化密度泛函理论研究了双核锌酶人肾二肽酶的反应机理。该酶催化二肽和β-内酰胺抗生素的水解。考虑了两个不同的质子化状态,其中重要的活性位点残基Asp288是中性的或离子化的。在两种情况下,均显示桥接的氢氧化物能够从其桥接位置对底物羰基碳进行亲核攻击,从而形成四面体中间体。该步骤之后,使二肽氮质子化,并进行C-N键裂解。计算结果表明,这两种情况都具有相当可行的能垒。当Asp288为中性时,发生放热反应的水解反应。但是,使用电离的Asp288,反应变得非常接近热中性。两种锌离子在反应中起着不同的作用。 Zn1结合底物的氨基,而Zn2与底物的羧酸盐基相互作用,有助于使其定向为亲核攻击。另外,Zn 2使四面体中间体的氧阴离子稳定,从而促进亲核攻击。

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