Evolution Enhances Kemp Eliminase Activity by Optimizing Oxyanion Stabilization and Conformational Flexibility

IF 3.9 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Chemistry - A European Journal Pub Date : 2024-11-14 DOI:10.1002/chem.202403747
Hiva Doustmohammadi, Janet Sanchez, Dhani Ram Mahato, Sílvia Osuna
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Abstract

The base-promoted Kemp elimination reaction has been used as a model system for enzyme design. Among the multiple computationally designed and evolved Kemp eliminases generated along the years, the HG3-to-HG3.17 evolutionary trajectory is particularly interesting due to the high catalytic efficiency of HG3.17 and the debated role of glutamine 50 (Gln50) as potential oxyanion stabilizer. This study aims to elucidate the structural and dynamic changes along the evolutionary pathway from HG3 to HG3.17 that contribute to improved catalytic efficiency. In particular, we evaluate key variants along the HG3 evolutionary trajectory via molecular dynamics simulations coupled to non-covalent interactions and water analysis. Our computational study indicates that HG3.17 can adopt a catalytically competent conformation promoted by a water-mediated network of non-covalent interactions, in which aspartate 127 (Asp127) is properly positioned for proton abstraction and Gln50 and to some extent mutation cysteine 84 (Cys84) contribute to oxyanion stabilization. We find that HG3.17 exhibits a rather high flexibility of Gln50, which is regulated by the conformation adopted by the active site residue tryptophan 44 (Trp44). This interplay between Gln50 and Trp44 positioning induced by distal active site mutations affects the water-mediated network of non-covalent interactions, Gln50 preorganization, and water content of the active site pocket.

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通过优化氧阴离子稳定性和构象灵活性,进化增强了坎普消除酶的活性。
碱基促进的坎普消除反应一直被用作酶设计的模型系统。在多年来通过计算设计和进化产生的多种坎普消除酶中,HG3 到 HG3.17 的进化轨迹尤其引人关注,因为 HG3.17 的催化效率很高,而且谷氨酰胺 50(Gln50)作为潜在氧阴离子稳定剂的作用也备受争议。本研究旨在阐明从 HG3 到 HG3.17 的进化路径上有助于提高催化效率的结构和动态变化。特别是,我们通过分子动力学模拟以及非共价相互作用和水分析,对 HG3 进化轨迹上的关键变体进行了评估。我们的计算研究表明,HG3.17 可以在水介导的非共价相互作用网络的促进下采用一种具有催化能力的构象,其中天冬氨酸 124 位于质子抽取的适当位置,谷氨酰胺 50 和突变半胱氨酸 84 都有助于氧阴离子的稳定。我们发现,HG3.17 的谷氨酰胺 50 具有相当高的灵活性,这种灵活性受到活性位点残基 Trp44 所采用的构象的调节。这种由活性位点远端突变诱导的 Gln50 和 Trp44 定位之间的相互作用会影响水介导的非共价相互作用网络、Gln50 预组织以及活性位点口袋的含水量。
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来源期刊
Chemistry - A European Journal
Chemistry - A European Journal 化学-化学综合
CiteScore
7.90
自引率
4.70%
发文量
1808
审稿时长
1.8 months
期刊介绍: Chemistry—A European Journal is a truly international journal with top quality contributions (2018 ISI Impact Factor: 5.16). It publishes a wide range of outstanding Reviews, Minireviews, Concepts, Full Papers, and Communications from all areas of chemistry and related fields. Based in Europe Chemistry—A European Journal provides an excellent platform for increasing the visibility of European chemistry as well as for featuring the best research from authors from around the world. All manuscripts are peer-reviewed, and electronic processing ensures accurate reproduction of text and data, plus short publication times. The Concepts section provides nonspecialist readers with a useful conceptual guide to unfamiliar areas and experts with new angles on familiar problems. Chemistry—A European Journal is published on behalf of ChemPubSoc Europe, a group of 16 national chemical societies from within Europe, and supported by the Asian Chemical Editorial Societies. The ChemPubSoc Europe family comprises: Angewandte Chemie, Chemistry—A European Journal, European Journal of Organic Chemistry, European Journal of Inorganic Chemistry, ChemPhysChem, ChemBioChem, ChemMedChem, ChemCatChem, ChemSusChem, ChemPlusChem, ChemElectroChem, and ChemistryOpen.
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