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来自放线菌的三种 Rieske 非血红素铁加氧酶在红球菌属中的功能表达,用于研究它们对二苯并呋喃和氯代二噁英的降解能力。

Functional expression of three Rieske non-heme iron oxygenases derived from actinomycetes in Rhodococcus species for investigation of their degradation capabilities of dibenzofuran and chlorinated dioxins.

作者信息

Iida Toshiya, Moteki Yasuhiro, Nakamura Kaoru, Taguchi Katsuhiko, Otagiri Masato, Asanuma Miwako, Dohmae Naoshi, Usami Ron, Kudo Toshiaki

机构信息

Ecomolecular Biorecycling Science Research Team, RIKEN Advanced Science Institute, Wako, Saitama 351-0198, Japan.

出版信息

Biosci Biotechnol Biochem. 2009 Apr 23;73(4):822-7. doi: 10.1271/bbb.80680. Epub 2009 Apr 7.

Abstract

The activity of Rieske non-heme iron oxygenases (aromatic hydrocarbon dioxygenases, AhDOs) is important for the bacterial degradation of aromatic pollutants such as polycyclic aromatic hydrocarbons and dioxins. During our analysis of the role of AhDOs in dioxin bioremediation, some enzymes derived from high G + C Gram-positive actinomycetes were difficult to produce in active form in the Escherichia coli protein expression system. In this study, we constructed a heterologous expression system for AhDOs in Rhodococcus species using a constitutive expression promoter, P(dfdB), and a shuttle vector, pRK401, and analyzed the ability of these enzymes to degrade dibenzofuran and deplete several chlorinated dioxins. Three active AhDOs expressed in Rhodococcus strains that were difficult to obtain by the E. coli system showed different regiospecificities for dibenzofuran bioconversion as well as different substrate depletion specificities for chlorinated dioxins. Moreover, AhDO derived from R. erythropolis TA421 showed relatively diverse depletion-substrate specificity for chlorinated dioxins.

摘要

Rieske非血红素铁加氧酶(芳烃双加氧酶,AhDOs)的活性对于细菌降解多环芳烃和二恶英等芳香污染物至关重要。在我们分析AhDOs在二恶英生物修复中的作用时,一些源自高G + C革兰氏阳性放线菌的酶在大肠杆菌蛋白质表达系统中难以产生活性形式。在本研究中,我们使用组成型表达启动子P(dfdB)和穿梭载体pRK401构建了红球菌属中AhDOs的异源表达系统,并分析了这些酶降解二苯并呋喃和消耗几种氯化二恶英的能力。在大肠杆菌系统中难以获得的三种在红球菌菌株中表达的活性AhDOs对二苯并呋喃生物转化表现出不同的区域特异性,对氯化二恶英也表现出不同的底物消耗特异性。此外,源自红平红球菌TA421的AhDO对氯化二恶英表现出相对多样的消耗底物特异性。

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