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大肠杆菌中MalT抑制剂Aes的结构与突变分析

Structural and mutational analyses of Aes, an inhibitor of MalT in Escherichia coli.

作者信息

Schiefner André, Gerber Kinga, Brosig Alexander, Boos Winfried

机构信息

Lehrstuhl für Biologische Chemie, Technische Universität München, 85350, Freising-Weihenstephan, Germany.

出版信息

Proteins. 2014 Feb;82(2):268-77. doi: 10.1002/prot.24383. Epub 2013 Oct 17.

Abstract

The acyl esterase Aes effectively inhibits the transcriptional activity of MalT-the central activator of maltose and maltodextrin utilizing genes in Escherichia coli. To provide better insight into the nature of the interaction between Aes and MalT, we determined two different crystal structures of Aes-in its native form and covalently modified by a phenylmethylsulfonyl moiety at its active site serine. Both structures show distinct space groups and were refined to a resolution of 1.8 Å and 2.3 Å, respectively. The overall structure of Aes resembles a canonical α/β-hydrolase fold, which is extended by a funnel-like cap structure that forms the substrate-binding site. The catalytic triad of Aes, comprising residues Ser165, His292, and Asp262, is located at the bottom of this funnel. Analysis of the crystal-packing contacts of the two different space groups as well as analytical size-exclusion chromatography revealed a homodimeric arrangement of Aes. The Aes dimer adopts an antiparallel contact involving both the hydrolase core and the cap, with its twofold axis perpendicular to the largest dimension of Aes. To identify the surface area of Aes that is responsible for the interaction with MalT, we performed a structure-based alanine-scanning mutagenesis to pinpoint Aes residues that are significantly impaired in MalT inhibition, but still exhibit wild-type expression and enzymatic activity. These residues map to a shallow slightly concave surface patch of Aes at the opposite site of the dimerization interface and indicate the surface area that interacts with MalT.

摘要

酰基酯酶Aes能有效抑制MalT的转录活性,MalT是大肠杆菌中利用麦芽糖和麦芽糊精的基因的核心激活因子。为了更深入地了解Aes与MalT之间相互作用的本质,我们确定了Aes的两种不同晶体结构,一种是天然形式,另一种是在其活性位点丝氨酸处被苯甲基磺酰基部分共价修饰的形式。两种结构显示出不同的空间群,分别精修至1.8 Å和2.3 Å的分辨率。Aes的整体结构类似于典型的α/β水解酶折叠,由形成底物结合位点的漏斗状帽结构延伸。Aes的催化三联体由Ser165、His292和Asp262残基组成,位于该漏斗的底部。对两种不同空间群的晶体堆积接触以及分析型尺寸排阻色谱的分析揭示了Aes的同二聚体排列。Aes二聚体采用涉及水解酶核心和帽的反平行接触,其二重轴垂直于Aes的最大尺寸。为了确定Aes与MalT相互作用的表面积,我们进行了基于结构的丙氨酸扫描诱变,以确定在抑制MalT方面显著受损但仍表现出野生型表达和酶活性的Aes残基。这些残基映射到二聚化界面相对位点处Aes的一个浅的略凹表面区域,表明了与MalT相互作用的表面积。

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