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Identification and characterization of the two-enzyme system catalyzing oxidation of EDTA in the EDTA-degrading bacterial strain DSM 9103.

机译:在降解EDTA的细菌菌株DSM 9103中催化EDTA氧化的双酶系统的鉴定和表征。

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摘要

In a gram-negative isolate (DSM 9103) able to grow with EDTA as the sole source of carbon, nitrogen, and energy, the first two steps of the catabolic pathway for EDTA were elucidated. They consisted of the sequential oxidative removal of two acetyl groups, resulting in the formation of glyoxylate. An enzyme complex that catalyzes the removal of two acetyl groups was purified and characterized. In the reaction, ethylenediaminetriacetate (ED3A) was formed as an intermediate and N,N'-ethylenediaminediacetate was the end product. The enzyme complex consisted of two components: component A' (cA'), most likely a monooxygenase, which catalyzes the cleavage of EDTA and ED3A while consuming oxygen and reduced flavin mononucleotide (FMN)-H2, and component B' (cB'), an NADH2:FMN oxidoreductase that provides FMNH2 for cA'. cB' could be replaced by other NADH2:FMN oxidoreductases such as component B of the nitrilotriacetate monooxygenase or the NADH2:FMN oxidoreductase from Photobacterium fischeri. The EDTA-oxidizing enzyme complex accepted EDTA as a substrate only when it was complexed with Mg2+, Zn2+, Mn2+, Co2+, or Cu2+. Moreover, the enzyme complex catalyzed the removal of acetyl groups from several other aminopolycarboxylic acids that possess three or more acetyl groups.
机译:在能够以EDTA作为碳,氮和能量唯一来源的革兰氏阴性分离株(DSM 9103)中,阐明了EDTA分解代谢途径的前两个步骤。它们由两个乙酰基的顺序氧化去除组成,导致乙醛酸的形成。纯化并表征了催化两个乙酰基去除的酶复合物。在反应中,形成乙二胺三乙酸酯(ED3A)作为中间体,N,N′-乙二胺二乙酸酯为终产物。该酶复合物由两个组分组成:组分A'(cA'),最有可能是单加氧酶,它在消耗氧气和还原的黄素单核苷酸(FMN)-H2的同时催化EDTA和ED3A的裂解,以及组分B'(cB') ,NADH2:FMN氧化还原酶,可为cA'提供FMNH2。 cB'可用其他NADH2:FMN氧化还原酶代替,例如次氮基三乙酸酯单加氧酶的组分B或来自费氏细菌的NADH2:FMN氧化还原酶。 EDTA-氧化酶复合物仅在与Mg2 +,Zn2 +,Mn2 +,Co2 +或Cu2 +复合时才接受EDTA作为底物。此外,酶复合物催化从具有三个或更多个乙酰基的其他几种氨基聚羧酸中除去乙酰基。

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