A CoA-Transferase and Acyl-CoA Dehydrogenase Convert 2-(Carboxymethyl)cyclohexane-1-Carboxyl-CoA During Anaerobic Naphthalene Degradation

IF 4.3 2区 生物学 Q2 MICROBIOLOGY Environmental microbiology Pub Date : 2024-12-19 DOI:10.1111/1462-2920.70013
Yachao Kong, Jan Riebe, Malte Feßner, Torsten Schaller, Christoph Wölper, Florian Stappert, Sven W. Meckelmann, Matthias Krajnc, Philip Weyrauch, Oliver J. Schmitz, Christian Merten, Jochen Niemeyer, Xiaoke Hu, Rainer U. Meckenstock
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Abstract

The CoA thioester of 2-(carboxymethyl)cyclohexane-1-carboxylic acid has been identified as a metabolite in anaerobic naphthalene degradation by the sulfate-reducing culture N47. This study identified and characterised two acyl-CoA dehydrogenases (ThnO/ThnT) and an intramolecular CoA-transferase (ThnP) encoded within the substrate-induced thn operon, which contains genes for anaerobic degradation of naphthalene. ThnP is a CoA transferase belonging to the family I (Cat 1 subgroup) that catalyses the intramolecular CoA transfer from the carboxyl group of 2-(carboxymethyl)cyclohexane-1-carboxyl-CoA to its carboxymethyl moiety, forming 2-carboxycyclohexylacetyl-CoA. Neither acetyl-CoA nor succinyl-CoA functions as an exogenous CoA donor for this reaction. The flavin-dependent homotetrameric dehydrogenase ThnO is specific for (1R,2R)-2-carboxycyclohexylacetyl-CoA with an apparent Km value of 61.5 μM, whereas ThnT is a promiscuous enzyme catalysing the same reaction at lower rates. Identifying these three enzymes confirmed the involvement of the thn gene cluster in the anaerobic naphthalene degradation pathway. This study establishes a modified metabolic pathway for anaerobic naphthalene degradation upstream of 2-(carboxymethyl)cyclohexane-1-carboxyl-CoA and provides further insight into the subsequent second-ring cleavage reaction.

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在厌氧萘降解过程中,辅酶A转移酶和酰基辅酶A脱氢酶转化2-(羧甲基)环己烷-1-羧基辅酶A
2-(羧甲基)环己烷-1-羧酸的辅酶a硫酯已被确定为硫酸盐还原培养N47厌氧降解萘的代谢物。本研究鉴定并表征了两种酰基辅酶a脱氢酶(ThnO/ThnT)和一种分子内辅酶a转移酶(ThnP),它们编码于底物诱导的操纵子中,其中含有萘厌氧降解的基因。ThnP是一种辅酶a转移酶,属于I科(Cat 1亚群),它催化分子内辅酶a从2-(羧甲基)环己烷-1-羧基辅酶a的羧基转移到其羧甲基部分,形成2-羧基环己基乙酰辅酶a。在这个反应中,乙酰辅酶a和琥珀酰辅酶a都不是外源性辅酶a供体。黄素依赖的同四聚体脱氢酶ThnO对(1R,2R)-2-羧基环己基乙酰辅酶a具有特异性,表观Km值为61.5 μM,而ThnT是一种杂交酶,在较低的速率下催化相同的反应。对这三种酶的鉴定证实了thn基因簇参与厌氧萘降解途径。本研究建立了2-(羧甲基)环己烷-1-羧基辅酶a上游厌氧萘降解的改进代谢途径,并为后续的二环裂解反应提供了进一步的认识。
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来源期刊
Environmental microbiology
Environmental microbiology 环境科学-微生物学
CiteScore
9.90
自引率
3.90%
发文量
427
审稿时长
2.3 months
期刊介绍: Environmental Microbiology provides a high profile vehicle for publication of the most innovative, original and rigorous research in the field. The scope of the Journal encompasses the diversity of current research on microbial processes in the environment, microbial communities, interactions and evolution and includes, but is not limited to, the following: the structure, activities and communal behaviour of microbial communities microbial community genetics and evolutionary processes microbial symbioses, microbial interactions and interactions with plants, animals and abiotic factors microbes in the tree of life, microbial diversification and evolution population biology and clonal structure microbial metabolic and structural diversity microbial physiology, growth and survival microbes and surfaces, adhesion and biofouling responses to environmental signals and stress factors modelling and theory development pollution microbiology extremophiles and life in extreme and unusual little-explored habitats element cycles and biogeochemical processes, primary and secondary production microbes in a changing world, microbially-influenced global changes evolution and diversity of archaeal and bacterial viruses new technological developments in microbial ecology and evolution, in particular for the study of activities of microbial communities, non-culturable microorganisms and emerging pathogens
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