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反硝化细菌中次氮基三乙酸(NTA)的厌氧降解:NTA脱氢酶-硝酸盐还原酶复合物的纯化与特性分析

Anaerobic degradation of nitrilotriacetate (NTA) in a denitrifying bacterium: purification and characterization of the NTA dehydrogenase-nitrate reductase enzyme complex.

作者信息

Jenal-Wanner U, Egli T

机构信息

Institute for Aquatic Sciences and Water Pollution Control, Swiss Federal Institute of Technology, Zurich ETHZ.

出版信息

Appl Environ Microbiol. 1993 Oct;59(10):3350-9. doi: 10.1128/aem.59.10.3350-3359.1993.

Abstract

The initial step in the anoxic metabolism of nitrilotriacetate (NTA) was investigated in a denitrifying member of the gamma subgroup of the Proteobacteria. In membrane-free cell extracts, the first step of NTA oxidation was catalyzed by a protein complex consisting of two enzymes, NTA dehydrogenase (NTADH) and nitrate reductase (NtR). The products formed were iminodiacetate and glyoxylate. Electrons derived from the oxidation of NTA were transferred to nitrate only via the artificial dye phenazine methosulfate, and nitrate was stoichiometrically reduced to nitrite. NTADH activity could be measured only in the presence of NtrR and vice versa. The NTADH-NtrR enzyme complex was purified and characterized. NTADH and NtrR were both alpha 2 dimers and had molecular weights of 170,000 and 105,000, respectively. NTADH contained covalently bound flavin cofactor, and NtrR contained a type b cytochrome. Optimum NTA-oxidizing activity was achieved at a molar ratio of NTADH to NtrR of approximately 1:1. So far, NTA is the only known substrate for NTADH. This is the first report of a redox enzyme complex catalyzing the oxidation of a substrate and concomitantly reducing nitrate.

摘要

在变形菌门γ亚群的一个反硝化成员中,研究了次氮基三乙酸(NTA)的缺氧代谢初始步骤。在无膜细胞提取物中,NTA氧化的第一步由一种由两种酶组成的蛋白质复合物催化,即NTA脱氢酶(NTADH)和硝酸盐还原酶(NtR)。形成的产物是亚氨基二乙酸和乙醛酸。源自NTA氧化的电子仅通过人工染料硫酸吩嗪甲硫酸盐转移至硝酸盐,并且硝酸盐按化学计量还原为亚硝酸盐。仅在存在NtrR时才能测量NTADH活性,反之亦然。对NTADH-NtrR酶复合物进行了纯化和表征。NTADH和NtrR均为α2二聚体,分子量分别为170,000和105,000。NTADH含有共价结合的黄素辅因子,NtrR含有b型细胞色素。当NTADH与NtrR的摩尔比约为1:1时,可实现最佳的NTA氧化活性。到目前为止,NTA是NTADH唯一已知的底物。这是关于一种氧化还原酶复合物催化底物氧化并同时还原硝酸盐的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c628/182458/44791f251c31/aem00039-0199-a.jpg

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