质子化
南极洲假丝酵母
脱质子化
化学
分子动力学
活动站点
天冬氨酸
残留物(化学)
计算化学
催化作用
立体化学
脂肪酶
酶
氨基酸
有机化学
生物化学
离子
作者
Matteo Capone,Laura Zanetti‐Polzi,Ilenia Leonzi,Nicoletta Spreti,Isabella Daidone
标识
DOI:10.1080/07391102.2022.2077834
摘要
Candida antarctica Lipase B (CALB) is a paradigm for the family of lipases. At pH 7, the optimal pH for catalysis, the protonation state of an aspartic acid of the active site (Asp134) could not be conclusively assigned. In fact, the pKa estimate provided by a widely used computational tool, namely PropKa, that predicts pKa values of ionizable groups in proteins based on the crystallographic structure, is only slightly above 7 (pKa = 7.25). This, along with the lack of an experimental evaluation, makes the assignment of its protonation state at neutral pH challenging. Here, we calculate the pKa of Asp134 by means of a fully atomistic multiscale computational approach based on classical molecular dynamics (MD) simulation and the perturbed matrix method (PMM), namely the MD-PMM approach. MD-PMM is able to take into account the dynamics of the system and, at the same time, to treat the deprotonation step at the quantum level. The calculations provide a pKa value of 8.9 ± 1.1, hence suggesting that Asp134 in CALB should be protonated at neutral, and even at slightly basic, pH.Communicated by Ramaswamy H. Sarma.
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