Purification, molecular characterization and metabolic mechanism of an aerobic tetrabromobisphenol A dehalogenase, a key enzyme of halorespiration in Ochrobactrum sp. T

Purification, molecular characterization and metabolic mechanism of an aerobic tetrabromobisphenol A dehalogenase, a key enzyme of halorespiration in Ochrobactrum sp. T
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苍白杆菌需氧四溴双酚 A 脱卤酶的纯化、分子表征和代谢机制,该酶是苍白杆菌中盐呼吸的关键酶。

DOI:
10.1016/j.chemosphere.2019.124461
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发表时间:
2019-12-01
期刊:
影响因子:
8.8
通讯作者:
An, Taicheng
An, Taicheng
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
Liang, Zhishu;Li, Guiying;An, Taicheng

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Due to the detoxification of tetrabromobisphenol A (TBBPA) varies from different bacterial strains and depends on their specific enzymatic machinery, it is necessary to understand them for potential in situ bioremediation application. The special ability of our previously isolated Ochrobactrum sp. T to simultaneously debrominate and aerobic mineralize TBBPA urgent us to continuously study its degradation molecular mechanism. Herein, the purification and characterization of the dehalogenase which can debrominate TBBPA was investigated based on its corresponding encoding gene tbbpaA. Results showed that an enzyme with molecular mass of 117 kDa, K-m of 26.6 mu M and V-max of 0.133 mu M min(-1) mg(-1) was purified and designated as bromophenol dehalogenase. It was the only detected dehalogenase which exhibited TBBPA degradation ability (78%). Moreover, its activity was significantly enhanced by adding NADPH or methyl viologen to the reaction solution. The high similarity of substrate spectrum between the dehalogenase from the recombinant strain and the wild strain further indicated that it was the main dehalogenase responsible for the debromination in wild strain. Based on three identified metabolites, a metabolic pathway of TBBPA by purified enzyme under oxic condition was proposed. This study provides an excellent dehalogenase candidate for mechanistic study of aerobic dehalogenation of brominated aromatic compound. (C) 2019 Elsevier Ltd. All rights reserved.