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东太平洋海隆新型酯酶的结构分析及其通过半理性设计提高耐热性。

Structural Insights into a Novel Esterase from the East Pacific Rise and Its Improved Thermostability by a Semirational Design.

机构信息

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Agric Food Chem. 2021 Jan 27;69(3):1079-1090. doi: 10.1021/acs.jafc.0c06338. Epub 2021 Jan 14.

DOI:10.1021/acs.jafc.0c06338
PMID:33445864
Abstract

Lipolytic enzymes are essential biocatalysts in food processing as well as pharmaceutical and pesticide industries, catalyzing the cleavage of ester bonds in a variety of acyl chain substrates. Here, we report the crystal structure of an esterase from the deep-sea hydrothermal vent of the East Pacific Rise (EprEst). The X-ray structure of EprEst in complex with the ligand, acetate, has been determined at 2.03 Å resolution. The structure reveals a unique spatial arrangement and orientation of the helix cap domain and α/β hydrolase domain, which form a substrate pocket with preference for short-chain acyl groups. Molecular docking analysis further demonstrated that the active site pocket could accommodate -nitrophenyl (NP) carboxyl ligands of varying lengths (≤6 C atoms), with NP-butyrate ester predicted to have the highest binding affinity. Additionally, the semirational design was conducted to improve the thermostability of EprEst by enzyme engineering based on the established structure and multiple sequence alignment. A mutation, K114P, introduced in the hinge region of the esterase, which displayed increased thermostability and enzyme activity. Collectively, the structural and functional data obtained herein could be used as basis for further protein engineering to ultimately expand the scope of industrial applications of marine-derived lipolytic enzymes.

摘要

脂肪酶是食品加工、制药和农药等行业中必不可少的生物催化剂,能够催化各种酰基链底物中酯键的断裂。在这里,我们报告了东太平洋海隆深海热液喷口酯酶的晶体结构(EprEst)。EprEst 与配体乙酸盐复合物的 X 射线结构已在 2.03Å分辨率下确定。该结构揭示了独特的螺旋盖结构域和 α/β 水解酶结构域的空间排列和取向,它们形成了一个优先与短链酰基结合的底物口袋。分子对接分析进一步表明,活性位点口袋可以容纳不同长度(≤6 个碳原子)的 -硝基苯(NP)羧酸酯配体,其中 NP-丁酸酯预测具有最高的结合亲和力。此外,基于已建立的结构和多重序列比对,通过酶工程进行半理性设计来提高 EprEst 的热稳定性。在酯酶的铰链区域引入突变 K114P,可提高其热稳定性和酶活性。总之,本文获得的结构和功能数据可作为进一步蛋白质工程的基础,最终扩大海洋来源脂肪酶的工业应用范围。

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