Přehled o publikaci
2023
Atypical homodimerization revealed by the structure of the (S)-enantioselective haloalkane dehalogenase DmmarA from Mycobacterium marinum
ŠNAJDAROVÁ, Karolína; Sérgio Manuel MARQUES; Jiří DAMBORSKÝ; David BEDNÁŘ; Martin MAREK et al.Basic information
Original name
Atypical homodimerization revealed by the structure of the (S)-enantioselective haloalkane dehalogenase DmmarA from Mycobacterium marinum
Authors
ŠNAJDAROVÁ, Karolína; Sérgio Manuel MARQUES; Jiří DAMBORSKÝ; David BEDNÁŘ and Martin MAREK
Edition
Acta Crystallographica Section D, Chester, International Union of Crystallography, 2023, 2059-7983
Other information
Language
English
Type of outcome
Article in a journal
Country of publisher
United Kingdom of Great Britain and Northern Ireland
Confidentiality degree
is not subject to a state or trade secret
References:
Marked to be transferred to RIV
Yes
RIV identification code
RIV/00216224:14310/23:00133095
Organization
Přírodovědecká fakulta – Repository – Repository
UT WoS
EID Scopus
Keywords in English
haloalkane dehalogenases; Mycobacterium marinum; DmmarA; homodimerization; surface loops; enantioselectivity; X-ray crystallography; SAXS
Links
EF17_043/0009632, research and development project. EF18_046/0015974, research and development project. GA22-09853S, research and development project. LM2023069, research and development project. LX22NPO5107, research and development project. 857560, interní kód Repo. CIISB II, large research infrastructures. e-INFRA CZ II, large research infrastructures.
Changed: 26/2/2025 00:50, RNDr. Daniel Jakubík
Abstract
In the original language
Haloalkane dehalogenases (HLDs) are a family of alpha/beta-hydrolase fold enzymes that employ S(N)2 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 angstrom resolution. The structures show a canonical alpha beta alpha-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.