Schühle Karola, Nies Jonas, Heider Johann
Laboratory for Microbiology, Philipps-Universität Marburg, Karl-von-Frisch-Straße 8, 35043, Marburg, Germany.
Environ Microbiol. 2016 Sep;18(9):3120-32. doi: 10.1111/1462-2920.13347. Epub 2016 May 26.
The plant hormone auxin (indoleacetate) is anaerobically degraded by the Betaproteobacterium Aromatoleum aromaticum. We report here on a CoA ligase (IaaB) and a CoA-transferase (IaaL) which are encoded in the apparent substrate-induced iaa operon containing genes for indoleacetate degradation. IaaB is a highly specific indoleacetate-CoA ligase which activates indoleacetate to the CoA-thioester immediately after uptake into the cytoplasm. This enzyme only activates indoleacetate and some closely related compounds such as naphthylacetate, phenylacetate and indolepropionate, and is inhibited by high concentrations of substrates, and by the synthetic auxin compound 2,4-dichlorophenoxyacetate, which does not serve as substrate. IaaL is a CoA-transferase recognizing several C4-dicarboxylic acids, such as succinate, phenylsuccinate or benzylsuccinate and their CoA-thioesters, but only few monocarboxylic acids and no C3-dicarboxylic acids such as benzylmalonate. The enzyme shows no stereospecific discrimation of the benzylsuccinate enantiomers. Moreover, benzylsuccinate is regiospecifically activated to 2-benzylsuccinyl-CoA, whereas phenylsuccinate is converted to an equal mixture of both regioisomers (2- and 3-phenylsuccinyl-CoA). The identification of these two enzymes allows us to set up a modified version of the metabolic pathway of anaerobic indoleacetate degradation and to investigate the sequences databases for the occurrence and distribution of this pathway in other microorgansisms.
植物激素生长素(吲哚乙酸)可被β-变形菌芳香烃石油降解菌进行厌氧降解。我们在此报告一种辅酶A连接酶(IaaB)和一种辅酶A转移酶(IaaL),它们编码于明显受底物诱导的iaa操纵子中,该操纵子包含吲哚乙酸降解相关基因。IaaB是一种高度特异性的吲哚乙酸 - 辅酶A连接酶,它在吲哚乙酸摄取到细胞质后立即将其激活为辅酶A硫酯。这种酶仅激活吲哚乙酸以及一些密切相关的化合物,如萘乙酸、苯乙酸和吲哚丙酸,并且受到高浓度底物以及不作为底物的合成生长素化合物2,4 - 二氯苯氧乙酸的抑制。IaaL是一种辅酶A转移酶,可识别几种C4 - 二羧酸,如琥珀酸、苯琥珀酸或苄基琥珀酸及其辅酶A硫酯,但仅识别少数单羧酸,不识别C3 - 二羧酸如苄基丙二酸。该酶对苄基琥珀酸对映体没有立体特异性区分。此外,苄基琥珀酸被区域特异性激活为2 - 苄基琥珀酰 - 辅酶A,而苯琥珀酸则转化为两种区域异构体(2 - 和3 - 苯琥珀酰 - 辅酶A)的等量混合物。这两种酶的鉴定使我们能够建立厌氧吲哚乙酸降解代谢途径的改进版本,并在序列数据库中研究该途径在其他微生物中的出现和分布情况。