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The 5,6,7,8-Tetrahydro-2-Naphthoyl-Coenzyme A Reductase Reaction in the Anaerobic Degradation of Naphthalene and Identification of Downstream Metabolites

机译:5,6,7,8-四氢-2-萘酰 - 辅酶为萘的厌氧降解中的还原酶反应及下游代谢物的鉴定

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Anaerobic degradation of polycyclic aromatic hydrocarbons has been investigated mostly with naphthalene as a model compound. Naphthalene degradation by sulfate-reducing bacteria proceeds via carboxylation to 2-naphthoic acid, formation of a coenzyme A thioester, and subsequent reduction to 5,6,7,8-tetrahydro-2-naphthoyl-coenzyme A (THNCoA), which is further reduced to hexahydro-2-naphthoyl-CoA (HHNCoA) by tetrahydronaphthoyl-CoA reductase (THNCoA reductase), an enzyme similar to class I benzoyl-CoA reductases. When analyzing THNCoA reductase assays with crude cell extracts and NADH as electron donor via liquid chromatography-mass spectrometry (LC-MS), scanning for putative metabolites, we found that small amounts of the product of an HHNCoA hydratase were formed in the assays, but the downstream conversion by an NAD~(+)-dependent β-hydroxyacyl-CoA dehydrogenase was prevented by the excess of NADH in those assays. Experiments with alternative electron donors indicated that 2-oxoglutarate can serve as an indirect electron donor for the THNCoA-reducing system via a 2-oxoglutarate:ferredoxin oxidoreductase. With 2-oxoglutarate as electron donor, THNCoA was completely converted and further metabolites resulting from subsequent β-oxidation-like reactions and hydrolytic ring cleavage were detected. These metabolites indicate a downstream pathway with water addition to HHNCoA and ring fission via a hydrolase acting on a β’-hydroxy-β-oxo-decahydro-2-naphthoyl-CoA intermediate. Formation of the downstream intermediate cis -2-carboxycyclohexylacetyl-CoA, which is the substrate for the previously described lower degradation pathway leading to the central metabolism, completes the anaerobic degradation pathway of naphthalene.IMPORTANCE Anaerobic degradation of polycyclic aromatic hydrocarbons is poorly investigated despite its significance in anoxic sediments. Using alternative electron donors for the 5,6,7,8-tetrahydro-2-naphthoyl-CoA reductase reaction, we observed intermediary metabolites of anaerobic naphthalene degradation via in vitro enzyme assays with cell extracts of anaerobic naphthalene degraders. The identified metabolites provide evidence that ring reduction terminates at the stage of hexahydro-2-naphthoyl-CoA and a sequence of β-oxidation-like degradation reactions starts with a hydratase acting on this intermediate. The final product of this reaction sequence was identified as cis -2-carboxycyclohexylacetyl-CoA, a compound for which a further downstream degradation pathway has recently been published (P. Weyrauch, A. V. Zaytsev, S. Stephan, L. Kocks, et al., Environ Microbiol 19:2819–2830, 2017, https://doi.org/10.1111/1462-2920.13806). Our study reveals the first ring-cleaving reaction in the anaerobic naphthalene degradation pathway. It closes the gap between the reduction of the first ring of 2-naphthoyl-CoA by 2-napthoyl-CoA reductase and the lower degradation pathway starting from cis -2-carboxycyclohexylacetyl-CoA, where the second ring cleavage takes place.
机译:多环芳烃的厌氧降解已经用萘作为模型化合物进行研究。通过硫酸盐降低细菌的萘降解通过羧化至2-萘酸,形成辅酶A硫酯,随后还原至5,6,7,8-四氢-2-萘酰 - 辅酵素A(ThnCoA),其进一步通过四氢萘酰-CoA还原酶(ThnCoA还原酶)减少到六羟基-2-萘酰-CoA(HHNCOA),类似于I类苯甲酰基COA还原酶的酶。当通过液相色谱 - 质谱(LC-MS)用粗细胞提取物和NADH分析ThnCoA还原酶和NADH时,用于推定代谢物的扫描,我们发现在测定中形成少量HHNCOA水合酶的产物,但是在这些测定中,通过过量的NADH通过NAD〜(+)依赖性β-羟基乙基-CoA脱氢酶的下游转化。具有替代电子供体的实验表明,2-氧代氟化丁酸盐可以通过2-氧氧化氟化物(Ferriedoxin Oxidoforyase)作为ThnCoA降低系统的间接电子给体。用2-氧代摩托酸盐作为电子供体,将ThnCOA完全转化,并检测由随后的β-氧化反应和水解环切割产生的进一步代谢物。这些代谢物表示通过作用于β'-羟基-β-氧代 - 甲基-2-萘酰-CoA中间体的水解酶的水解和环裂隙的下游路径。形成下游中间的中间碳酸-2-羧基环己基乙酰乙酰乙烯基乙酰-CoA,其是前述较低的降解途径的基材,其导致中央代谢的载体,完成了萘的厌氧降解途径。只有其缺氧沉积物的意义。使用替代电子供体为5,6,7,8-四氢-2-萘酰-CoA还原酶反应,我们观察了通过体外酶测定的体外酶测定来观察到厌氧萘降解的中间代谢物,其具有厌氧萘降解剂的细胞提取物。所确定的代谢物提供了证据,即在六羟基-2-萘酰-COA的阶段和β-氧化样劣化反应的序列中终止于β-氧化样的降解反应的序列。该反应序列的最终产物被鉴定为CIS -2-羧基己酰己基乙酰-COA,该化合物最近发表了另一种下游降解途径的化合物(P.Weyrauch,AV Zaytsev,S. Stephan,L.Kocks等。 ,环境微生物19:2819-2830,2017,https://doi.org/10.1111/1462-2920.13806)。我们的研究揭示了在厌氧萘降解途径中的第一种环切割反应。它缩短了从CIS-2-羧基己基乙酰乙酰基-COA开始的2-萘酰-COA还原酶和较低降解途径之间的第一环的减少与下降途径之间的间隙。

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