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结构、生化特性及植物乳杆菌 WCFS1 羧酸酯酶 Cest-2923 多态性分析。

Structure, biochemical characterization and analysis of the pleomorphism of carboxylesterase Cest-2923 from Lactobacillus plantarum WCFS1.

机构信息

Department of Crystallography and Structural Biology, Institute of Physical Chemistry Rocasolano, CSIC, Madrid, Spain.

出版信息

FEBS J. 2013 Dec;280(24):6658-71. doi: 10.1111/febs.12569. Epub 2013 Nov 4.

Abstract

The hydrolase fold is one of the most versatile structures in the protein realm according to the diversity of sequences adopting such a three-dimensional architecture. In the present study, we clarified the crystal structure of the carboxylesterase Cest-2923 from the lactic acid bacterium Lactobacillus plantarum WCFS1 refined to 2.1 Å resolution, determined its main biochemical characteristics and also carried out an analysis of its associative behaviour in solution. We found that the versatility of a canonical α/β hydrolase fold, the basic framework of the crystal structure of Cest-2923, also extends to its oligomeric behaviour in solution. Thus, we discovered that Cest-2923 exhibits a pH-dependent pleomorphic behaviour in solution involving monomers, canonical dimers and tetramers. Although, at neutral pH, the system is mainly shifted to dimeric species, under acidic conditions, tetrameric species predominate. Despite these tetramers resulting from the association of canonical dimers, as is commonly found in many other carboxylesterases from the hormone-sensitive lipase family, they can be defined as 'noncanonical' because they represent a different association mode. We identified this same type of tetramer in the closest relative of Cest-2923 that has been structurally characterized: the sugar hydrolase YeeB from Lactococcus lactis. The observed associative behaviour is consistent with the different crystallographic results for Cest-2923 from structural genomics consortia. Finally, the presence of sulfate or acetate molecules (depending on the crystal form analysed) in the close vicinity of the nucleophile Ser116 allows us to identify interactions with the putative oxyanion hole and deduce the existence of hydrolytic activity within Cest-2923 crystals.

摘要

根据采用这种三维结构的序列多样性,水解酶折叠是蛋白质领域中最通用的结构之一。在本研究中,我们解析了乳酸乳球菌 WCFS1 来源的羧酸酯酶 Cest-2923 的晶体结构,分辨率达到 2.1 Å,确定了其主要生化特性,并对其在溶液中的缔合行为进行了分析。我们发现,经典α/β水解酶折叠的多功能性——Cest-2923 晶体结构的基本框架——也扩展到了其在溶液中的寡聚行为。因此,我们发现 Cest-2923 在溶液中表现出依赖 pH 的多形态行为,涉及单体、典型二聚体和四聚体。虽然在中性 pH 下,该系统主要向二聚体物种转移,但在酸性条件下,四聚体物种占优势。尽管这些四聚体是由典型二聚体的缔合形成的,就像许多来自激素敏感脂肪酶家族的其他羧酸酯酶中常见的那样,但它们可以被定义为“非典型”,因为它们代表了一种不同的缔合模式。我们在 Cest-2923 的最近亲缘关系中鉴定出了这种相同类型的四聚体,该四聚体已经通过结构特征进行了表征:乳球菌 lactis 的糖水解酶 YeeB。观察到的缔合行为与来自结构基因组学联合体的 Cest-2923 的不同晶体学结果一致。最后,在靠近亲核试剂 Ser116 的位置存在硫酸盐或乙酸盐分子(取决于分析的晶体形式),使我们能够识别与假定的氧阴离子穴的相互作用,并推断出 Cest-2923 晶体中存在水解活性。

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