Suppr超能文献

烃类的厌氧微生物降解:从酶促反应到环境

Anaerobic Microbial Degradation of Hydrocarbons: From Enzymatic Reactions to the Environment.

作者信息

Rabus Ralf, Boll Matthias, Heider Johann, Meckenstock Rainer U, Buckel Wolfgang, Einsle Oliver, Ermler Ulrich, Golding Bernard T, Gunsalus Robert P, Kroneck Peter M H, Krüger Martin, Lueders Tillmann, Martins Berta M, Musat Florin, Richnow Hans H, Schink Bernhard, Seifert Jana, Szaleniec Maciej, Treude Tina, Ullmann G Matthias, Vogt Carsten, von Bergen Martin, Wilkes Heinz

机构信息

General and Molecular Microbiology, Institute for Chemistry and Biology of the Marine Environment (ICBM), Carl von Ossietzky University Oldenburg, Oldenburg, Germany.

出版信息

J Mol Microbiol Biotechnol. 2016;26(1-3):5-28. doi: 10.1159/000443997. Epub 2016 Mar 10.

Abstract

Hydrocarbons are abundant in anoxic environments and pose biochemical challenges to their anaerobic degradation by microorganisms. Within the framework of the Priority Program 1319, investigations funded by the Deutsche Forschungsgemeinschaft on the anaerobic microbial degradation of hydrocarbons ranged from isolation and enrichment of hitherto unknown hydrocarbon-degrading anaerobic microorganisms, discovery of novel reactions, detailed studies of enzyme mechanisms and structures to process-oriented in situ studies. Selected highlights from this program are collected in this synopsis, with more detailed information provided by theme-focused reviews of the special topic issue on 'Anaerobic biodegradation of hydrocarbons' [this issue, pp. 1-244]. The interdisciplinary character of the program, involving microbiologists, biochemists, organic chemists and environmental scientists, is best exemplified by the studies on alkyl-/arylalkylsuccinate synthases. Here, research topics ranged from in-depth mechanistic studies of archetypical toluene-activating benzylsuccinate synthase, substrate-specific phylogenetic clustering of alkyl-/arylalkylsuccinate synthases (toluene plus xylenes, p-cymene, p-cresol, 2-methylnaphthalene, n-alkanes), stereochemical and co-metabolic insights into n-alkane-activating (methylalkyl)succinate synthases to the discovery of bacterial groups previously unknown to possess alkyl-/arylalkylsuccinate synthases by means of functional gene markers and in situ field studies enabled by state-of-the-art stable isotope probing and fractionation approaches. Other topics are Mo-cofactor-dependent dehydrogenases performing O2-independent hydroxylation of hydrocarbons and alkyl side chains (ethylbenzene, p-cymene, cholesterol, n-hexadecane), degradation of p-alkylated benzoates and toluenes, glycyl radical-bearing 4-hydroxyphenylacetate decarboxylase, novel types of carboxylation reactions (for acetophenone, acetone, and potentially also benzene and naphthalene), W-cofactor-containing enzymes for reductive dearomatization of benzoyl-CoA (class II benzoyl-CoA reductase) in obligate anaerobes and addition of water to acetylene, fermentative formation of cyclohexanecarboxylate from benzoate, and methanogenic degradation of hydrocarbons.

摘要

碳氢化合物在缺氧环境中含量丰富,对微生物的厌氧降解构成生化挑战。在优先项目1319的框架内,德国研究基金会资助的关于碳氢化合物厌氧微生物降解的研究范围广泛,包括分离和富集迄今未知的降解碳氢化合物的厌氧微生物、发现新反应、详细研究酶机制和结构以及以过程为导向的原位研究。本综述收集了该项目的部分亮点,“碳氢化合物的厌氧生物降解”专题的主题聚焦综述提供了更详细的信息[本期,第1 - 244页]。该项目的跨学科性质,涉及微生物学家、生物化学家、有机化学家及环境科学家,烷基/芳基烷基琥珀酸合酶的研究便是最佳例证。在此,研究主题涵盖从典型的甲苯活化苄基琥珀酸合酶的深入机制研究、烷基/芳基烷基琥珀酸合酶(甲苯加二甲苯、对异丙基苯、对甲酚、2 - 甲基萘、正构烷烃)的底物特异性系统发育聚类、对正构烷烃活化(甲基烷基)琥珀酸合酶的立体化学和共代谢见解,到借助功能基因标记以及通过先进的稳定同位素探测和分馏方法进行的原位现场研究发现先前未知拥有烷基/芳基烷基琥珀酸合酶的细菌类群。其他主题包括进行碳氢化合物和烷基侧链(乙苯、对异丙基苯、胆固醇、正十六烷)非氧依赖性羟基化的钼辅因子依赖性脱氢酶、对烷基化苯甲酸酯和甲苯的降解、含甘氨酰自由基的4 - 羟基苯乙酸脱羧酶、新型羧化反应(用于苯乙酮、丙酮,可能还有苯和萘)、专性厌氧菌中用于苯甲酰辅酶A还原脱芳构化的含钨辅因子酶(II类苯甲酰辅酶A还原酶)以及乙炔加水反应、由苯甲酸发酵形成环己烷羧酸盐以及碳氢化合物的产甲烷降解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验