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胆碱氨基酸离子液体中脂肪酶 B 活性的增强:实验与计算分析的综合研究。

Enhanced activity of lipase B in cholinium aminoate ionic liquids: a combined experimental and computational analysis.

作者信息

Chan Kam Khong, Sundaram Vidya, Tan Jully, Ho Yong Kuen, Ramanan Ramakrishnan Nagasundara, Ooi Chien Wei

机构信息

Chemical Engineering Department, School of Engineering, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway, Selangor, Malaysia.

Biological Engineering Discipline, Indian Institute of Technology Gandhinagar, Gandhinagar, Gujarat, India.

出版信息

J Biomol Struct Dyn. 2024;42(21):11351-11365. doi: 10.1080/07391102.2023.2262590. Epub 2023 Oct 3.


DOI:10.1080/07391102.2023.2262590
PMID:37787564
Abstract

As a class of ionic liquids with higher biocompatibility, cholinium aminoates ([Cho][AA]) hold potential as solvation media for enzymatic bioprocessing. Herein, solvation effect of [Cho][AA] on structural stability and enzymatic activity of lipase B (CALB) was evaluated using experimental and computational approaches. Influence of [Cho][AA] on CALB stability was investigated using amino acid anions ([AA]) with varying hydrophobicity levels. Choline phenylalaninate ([Cho][Phe]) resulted in 109.1% and 110.4% of relative CALB activity to buffer medium at 25 °C and 50 °C, respectively. Simulation results revealed the improvement of CALB's enzymatic activities by [AA] with a strong hydrophobic character. Shielding of CALB from water molecules by [AA] was observed. The level of CALB activity was governed by accumulation level of [AA] at CALB's first hydration layer. The stronger interaction between His224 and Asp187 was postulated to be driven by [Cho][AA], resulting in the activity enhancement of CALB. The slight improvement of CALB activity in 0.05 M [Cho][Phe] at 50 °C could be due to the larger size of entrance to the catalytic site and the stronger interaction between the catalytic residues. The promising effect of [Cho][Phe] on CALB activation may stimulate research efforts in designing a 'fully green' bioreaction for various industrial applications.Communicated by Ramaswamy H. Sarma.

摘要

作为一类具有更高生物相容性的离子液体,胆碱氨基酸盐 ([Cho][AA]) 有可能作为酶生物加工的溶剂介质。本文采用实验和计算方法评价了 [Cho][AA] 对脂肪酶 B(CALB)结构稳定性和酶活性的溶剂化效应。通过具有不同疏水性水平的氨基酸阴离子 ([AA]) 研究了 [Cho][AA] 对 CALB 稳定性的影响。在 25°C 和 50°C 时,与缓冲介质相比,胆碱苯丙氨酸 ([Cho][Phe]) 使 CALB 的相对酶活性分别提高了 109.1%和 110.4%。模拟结果表明,疏水性强的 [AA] 可提高 CALB 的酶活性。观察到 [AA] 可屏蔽 CALB 与水分子的相互作用。CALB 酶活性的水平由 [AA] 在 CALB 第一层水合层的积累水平决定。推测 [Cho][AA] 驱动了 His224 和 Asp187 之间更强的相互作用,从而增强了 CALB 的活性。在 50°C 下,0.05 M [Cho][Phe] 中 CALB 活性略有提高可能是由于进入催化部位的入口较大,以及催化残基之间的相互作用更强。[Cho][Phe] 对 CALB 激活的良好效果可能会激发人们设计用于各种工业应用的“完全绿色”生物反应的研究工作。由 Ramaswamy H. Sarma 交流。

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