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来自地衣芽孢杆菌的 BlEst2 原肽和成熟形式的结构揭示了 C 末端结构域的自身抑制效应。

Structures of BlEst2 from Bacillus licheniformis in its propeptide and mature forms reveal autoinhibitory effects of the C-terminal domain.

机构信息

Sao Carlos Institute of Physics, University of Sao Paulo, Sao Carlos, Brazil.

Institute of Chemistry and Center for Computing in Engineering and Sciences, University of Campinas - UNICAMP, Brazil.

出版信息

FEBS J. 2024 Nov;291(22):4930-4950. doi: 10.1111/febs.17229. Epub 2024 Jul 27.

Abstract

Carboxylesterases comprise a major class of α/β-fold hydrolases responsible for the cleavage and formation of ester bonds. Found ubiquitously in nature, these enzymes are crucial for the metabolism of both endogenous and exogenous carboxyl esters in animals, plants and microorganisms. Beyond their essential physiological roles, carboxylesterases stand out as one of the important classes of biocatalysts for biotechnology. BlEst2, an enzyme previously classified as Bacillus licheniformis esterase, remains largely uncharacterized. In the present study, we elucidate the structural biology, molecular dynamics and biochemical features of BlEst2. Our findings reveal a canonical α/β-hydrolase fold similar to the ESTHER block L of lipases, further augmented by two additional accessory C-terminal domains. Notably, the catalytic domain demonstrates two insertions, which occupy conserved locations in α/β-hydrolase proteins and commonly form the lid domain in lipase structures. Intriguingly, our in vitro cleavage of C-terminal domains revealed the structure of the active form of BlEst2. Upon activation, BlEst2 showed a markedly elevated hydrolytic activity. This observation implies that the intramolecular C-terminal domain serves as a regulatory intramolecular inhibitor. Interestingly, despite exhibiting esterase-like activity, BlEst2 structural characteristics align more closely with lipases. This suggests that BlEst2 could potentially represent a previously unrecognized subgroup within the realm of carboxyl ester hydrolases.

摘要

羧酸酯酶属于 α/β 折叠水解酶的主要类别,负责酯键的断裂和形成。这些酶在自然界中广泛存在,对于动物、植物和微生物中外源和内源性羧酸酯的代谢至关重要。除了它们的基本生理作用外,羧酸酯酶作为生物技术中的重要生物催化剂之一也引人注目。BlEst2 是一种先前被归类为地衣芽孢杆菌酯酶的酶,其性质在很大程度上仍未被阐明。在本研究中,我们阐明了 BlEst2 的结构生物学、分子动力学和生化特征。我们的发现揭示了一个与 ESTHER 块 L 相似的典型的 α/β-水解酶折叠,进一步由两个额外的附加 C 末端结构域增强。值得注意的是,催化结构域具有两个插入序列,这些序列占据了 α/β-水解酶蛋白中的保守位置,并且在脂肪酶结构中通常形成盖子结构域。有趣的是,我们对 C 末端结构域的体外切割揭示了 BlEst2 的活性形式的结构。激活后,BlEst2 表现出明显升高的水解活性。这一观察结果表明,分子内 C 末端结构域充当调节性的分子内抑制剂。有趣的是,尽管 BlEst2 表现出酯酶样活性,但它的结构特征与脂肪酶更接近。这表明 BlEst2 可能代表了羧基酯水解酶领域中一个以前未被识别的亚群。

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