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从伸长盐单胞菌中鉴定、表征和固定一种新型 YbfF 酯酶。

Identification, characterization, and immobilization of a novel YbfF esterase from Halomonas elongata.

机构信息

Department of Chemistry, Graduate School of Natural Science, Sookmyung Women's University, Seoul 04310, Republic of Korea; Department of Precision Medicine, School of Medicine, SungKyunKwan University, Suwon 16419, Republic of Korea.

Department of Chemistry, Graduate School of Natural Science, Sookmyung Women's University, Seoul 04310, Republic of Korea.

出版信息

Int J Biol Macromol. 2020 Dec 15;165(Pt A):1139-1148. doi: 10.1016/j.ijbiomac.2020.09.247. Epub 2020 Oct 6.

Abstract

The YbfF esterase family, which has a bifurcated binding pocket for diverse ligands, could serve as excellent biocatalysts in industrial and biotechnological applications. Here, the identification, characterization, and immobilization of a novel YbfF esterase (YbfF) from Halomonas elongata DSM 2581 is reported. Biochemical characterization of YbfF was carried out using activity staining, chromatographic analysis, kinetic analysis, activity assay, acetic acid release, and pH-indicator-based hydrolysis. YbfF displayed broad substrate specificity, including that for p-nitrophenyl esters, glucose pentaacetate, tert-butyl acetate, and β-lactam-containing compounds, with high efficiency. Based on a homology model of YbfF, Trp in the substrate-binding pocket, a critical residue for catalytic activity and substrate specificity was identified and characterized. Furthermore, crosslinked enzyme aggregates and nanoflower formation were explored to enhance the chemical stability and recyclability of YbfF. The present study is the first report of a YbfF esterase from extremophiles, and explains its protein stability, catalytic activity, substrate specificities and diversities, kinetics, functional residues, amyloid formation, and immobilization.

摘要

YbfF 酯酶家族具有分叉的结合口袋,可用于各种配体,因此可以作为工业和生物技术应用中的优秀生物催化剂。本研究报告了从盐单胞菌 DSM 2581 中鉴定、表征和固定化新型 YbfF 酯酶(YbfF)。通过活性染色、色谱分析、动力学分析、活性测定、乙酸释放和基于 pH 指示剂的水解对 YbfF 的生化特性进行了研究。YbfF 显示出广泛的底物特异性,包括对 p-硝基苯酯、葡萄糖五乙酸酯、叔丁基乙酸酯和含β-内酰胺的化合物的高效性。基于 YbfF 的同源模型,鉴定并表征了底物结合口袋中的色氨酸(Trp),该氨基酸是催化活性和底物特异性的关键残基。此外,还探索了交联酶聚集体和纳米花的形成,以提高 YbfF 的化学稳定性和可回收性。本研究首次报道了来自极端微生物的 YbfF 酯酶,并解释了其蛋白质稳定性、催化活性、底物特异性和多样性、动力学、功能残基、淀粉样形成和固定化。

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