首页> 外文期刊>Journal of the American Chemical Society >Elucidation of Hydrolysis Mechanisms for Fatty Acid Amide Hydrolase and Its Lys142Ala Variant via QM/MM Simulations
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Elucidation of Hydrolysis Mechanisms for Fatty Acid Amide Hydrolase and Its Lys142Ala Variant via QM/MM Simulations

机译:通过QM / MM模拟阐明脂肪酸酰胺水解酶及其Lys142Ala变体的水解机理

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摘要

Fatty acid amide hydrolase (FAAH) is a serine hydrolase that degrades anandamide,an endocannabinoid,and oleamide,a sleep-inducing lipid,and has potential applications as a therapeutic target for neurological disorders.Remarkably,FAAH hydrolyzes amides and esters with similar rates; however,the normal preference for esters reemerges when Lys142 is mutated to alanine.To elucidate the hydrolysis mechanisms and the causes behind this variation of selectivity,mixed quantum and molecular mechanics (QM/MM) calculations were carried out to obtain free-energy profiles for alternative mechanisms for the enzymatic hydrolyses.The methodology features free-energy perturbation calculations in Monte Carlo simulations with PDDG/PM3 as the QM method.For wild-type FAAH,the results support a mechanism,which features proton transfer from Ser217 to Lys142,simultaneous proton transfer from Ser241 to Ser217,and attack of Ser241 on the substrate's carbonyl carbon to yield a tetrahedral intermediate,which subsequently undergoes elimination with simultaneous protonation of the leaving group by a Lys142-Ser217 proton shuttle.For the Lys142Ala mutant,a striking multistep sequence is proposed with simultaneous proton transfer from Ser241 to Ser217,attack of Ser241 on the carbonyl carbon of the substrate,and elimination of the leaving group and its protonation by Ser217.Support comes from the free-energy results,which well reproduce the observation that the Lys142Ala mutation in FAAH decreases the rate of hydrolysis for oleamide significantly more than for methyl oleate.
机译:脂肪酸酰胺水解酶(FAAH)是一种丝氨酸水解酶,可降解anandamide(一种内源性大麻素)和油酰胺(一种诱导睡眠的脂质),并且有可能作为神经系统疾病的治疗靶标。FAAH显着地以相似的速率水解酰胺和酯。然而,当Lys142突变为丙氨酸时,通常会重新出现酯的偏爱。为阐明水解机理及其选择性变化的原因,进行了混合量子和分子力学(QM / MM)计算,获得了该方法的特点是在蒙特卡罗模拟中以PDDG / PM3作为QM方法进行自由能扰动计算。对于野生型FAAH,结果支持一种机制,其特征是质子从Ser217转移到Lys142,同时质子从Ser241转移到Ser217,Ser241攻击底物的羰基碳,生成四面体中间体,随后通过Lys142-Ser217质子穿梭进行消除,同时使离去基团质子化。对于Lys142Ala突变体,一个引人注目的多步序列提出了质子从Ser241到Ser217的同时转移,Ser241对t羰基碳的攻击支持来自自由能结果,这很好地再现了以下观察结果:FAAH的Lys142Ala突变对油酰胺的水解速率比对油酸甲酯的降解速率明显更大。

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