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来自纤维堆囊菌的单个模块酯酶中导致多个活性位点的多个亲核肘部。

Multiple nucleophilic elbows leading to multiple active sites in a single module esterase from Sorangium cellulosum.

作者信息

Udatha D B R K Gupta, Madsen Karina Marie, Panagiotou Gianni, Olsson Lisbeth

机构信息

Section for Genetics and Evolutionary Biology, Department of Biosciences, University of Oslo, Oslo, Norway.

Center for Biological Sequence Analysis, DTU-Systems Biology, Building 208, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.

出版信息

J Struct Biol. 2015 Jun;190(3):314-27. doi: 10.1016/j.jsb.2015.04.009. Epub 2015 Apr 20.

Abstract

The catalytic residues in carbohydrate esterase enzyme families constitute a highly conserved triad: serine, histidine and aspartic acid. This catalytic triad is generally located in a very sharp turn of the protein backbone structure, called the nucleophilic elbow and identified by the consensus sequence GXSXG. An esterase from Sorangium cellulosum Soce56 that contains five nucleophilic elbows was cloned and expressed in Escherichia coli and the function of each nucleophilic elbowed site was characterized. In order to elucidate the function of each nucleophilic elbow, site directed mutagenesis was used to generate variants with deactivated nucleophilic elbows and the functional promiscuity was analyzed. In silico analysis together with enzymological characterization interestingly showed that each nucleophilic elbow formed a local active site with varied substrate specificities and affinities. To our knowledge, this is the first report presenting the role of multiple nucleophilic elbows in the catalytic promiscuity of an esterase. Further structural analysis at protein unit level indicates the new evolutionary trajectories in emerging promiscuous esterases.

摘要

碳水化合物酯酶家族中的催化残基构成了一个高度保守的三联体

丝氨酸、组氨酸和天冬氨酸。这个催化三联体通常位于蛋白质主链结构的一个非常急剧的转折处,称为亲核肘部,由共有序列GXSXG识别。从纤维堆囊菌Soce56中克隆出一种含有五个亲核肘部的酯酶,并在大肠杆菌中表达,对每个亲核肘部位点的功能进行了表征。为了阐明每个亲核肘部的功能,采用定点诱变产生亲核肘部失活的变体,并分析其功能混杂性。计算机分析和酶学表征有趣地表明,每个亲核肘部形成了具有不同底物特异性和亲和力的局部活性位点。据我们所知,这是第一份报道多个亲核肘部在酯酶催化混杂性中作用的报告。在蛋白质单元水平上的进一步结构分析表明了新兴混杂酯酶的新进化轨迹。

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