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海分枝杆菌(S)-对映体选择性卤代烷脱卤酶DmmarA的结构揭示的非典型同二聚化

Atypical homodimerization revealed by the structure of the (S)-enantioselective haloalkane dehalogenase DmmarA from Mycobacterium marinum.

作者信息

Snajdarova Karolina, Marques Sérgio M, Damborsky Jiri, Bednar David, Marek Martin

机构信息

Loschmidt Laboratories, Department of Experimental Biology and RECETOX, Faculty of Science, Masaryk University, Kamenice 5, Building A13, 625 00 Brno, Czech Republic.

出版信息

Acta Crystallogr D Struct Biol. 2023 Nov 1;79(Pt 11):956-970. doi: 10.1107/S2059798323006642. Epub 2023 Oct 20.

Abstract

Haloalkane dehalogenases (HLDs) are a family of α/β-hydrolase fold enzymes that employ S2 nucleophilic substitution to cleave the carbon-halogen bond in diverse chemical structures, the biological role of which is still poorly understood. Atomic-level knowledge of both the inner organization and supramolecular complexation of HLDs is thus crucial to understand their catalytic and noncatalytic functions. Here, crystallographic structures of the (S)-enantioselective haloalkane dehalogenase DmmarA from the waterborne pathogenic microbe Mycobacterium marinum were determined at 1.6 and 1.85 Å resolution. The structures show a canonical αβα-sandwich HLD fold with several unusual structural features. Mechanistically, the atypical composition of the proton-relay catalytic triad (aspartate-histidine-aspartate) and uncommon active-site pocket reveal the molecular specificities of a catalytic apparatus that exhibits a rare (S)-enantiopreference. Additionally, the structures reveal a previously unobserved mode of symmetric homodimerization, which is predominantly mediated through unusual L5-to-L5 loop interactions. This homodimeric association in solution is confirmed experimentally by data obtained from small-angle X-ray scattering. Utilizing the newly determined structures of DmmarA, molecular modelling techniques were employed to elucidate the underlying mechanism behind its uncommon enantioselectivity. The (S)-preference can be attributed to the presence of a distinct binding pocket and variance in the activation barrier for nucleophilic substitution.

摘要

卤代烷脱卤酶(HLDs)是一类α/β-水解酶折叠酶,利用S2亲核取代作用裂解多种化学结构中的碳-卤键,但其生物学作用仍知之甚少。因此,了解HLDs的内部组织和超分子复合的原子水平知识对于理解其催化和非催化功能至关重要。在此,测定了来自水生致病微生物海分枝杆菌的(S)-对映选择性卤代烷脱卤酶DmmarA在1.6 Å和1.85 Å分辨率下的晶体结构。这些结构显示出具有几个不寻常结构特征的典型αβα三明治HLD折叠。从机制上讲,质子传递催化三联体(天冬氨酸-组氨酸-天冬氨酸)的非典型组成和不常见的活性位点口袋揭示了一种表现出罕见(S)-对映体偏好的催化装置的分子特异性。此外,这些结构揭示了一种以前未观察到的对称同二聚化模式,其主要通过不寻常的L5到L5环相互作用介导。通过小角X射线散射获得的数据在实验上证实了溶液中的这种同二聚体缔合。利用新测定的DmmarA结构,采用分子建模技术阐明其不寻常对映选择性背后的潜在机制。(S)-偏好可归因于存在一个独特的结合口袋以及亲核取代活化能垒的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cd0/10619424/a49637ef8e1c/d-79-00956-fig1.jpg

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