首页> 外文期刊>Journal of bacteriology >Conversion of 3-Chlorocatechol by Various Catechol 2,3-Dioxygenases and Sequence Analysis of the Chlorocatechol Dioxygenase Region of Pseudomonas putida GJ31
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Conversion of 3-Chlorocatechol by Various Catechol 2,3-Dioxygenases and Sequence Analysis of the Chlorocatechol Dioxygenase Region of Pseudomonas putida GJ31

机译:各种邻苯二酚2,3-二加氧酶转化3-氯邻苯二酚和恶臭假单胞菌GJ31的氯邻苯二酚二加氧酶区序列分析

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Pseudomonas putida GJ31 contains an unusual catechol 2,3-dioxygenase that converts 3-chlorocatechol and 3-methylcatechol, which enables the organism to use both chloroaromatics and methylaromatics for growth. A 3.1-kb region of genomic DNA of strain GJ31 containing the gene for this chlorocatechol 2,3-dioxygenase (cbzE) was cloned and sequenced. The cbzE gene appeared to be plasmid localized and was found in a region that also harbors genes encoding a transposase, a ferredoxin that was homologous to XylT, an open reading frame with similarity to a protein of ameta-cleavage pathway with unknown function, and a 2-hydroxymuconic semialdehyde dehydrogenase. CbzE was most similar to catechol 2,3-dioxygenases of the 2.C subfamily of type 1 extradiol dioxygenases (L. D. Eltis and J. T. Bolin, J. Bacteriol. 178:5930–5937, 1996). The substrate range and turnover capacity with 3-chlorocatechol were determined for CbzE and four related catechol 2,3-dioxygenases. The results showed that CbzE was the only enzyme that could productively convert 3-chlorocatechol. Besides, CbzE was less susceptible to inactivation by methylated catechols. Hybrid enzymes that were made of CzbE and the catechol 2,3-dioxygenase of P. putida UCC2 (TdnC) showed that the resistance of CbzE to suicide inactivation and its substrate specificity were mainly determined by the C-terminal region of the protein.
机译:恶臭假单胞菌 GJ31含有一种异常的儿茶酚2,3-二加氧酶,该酶可转化3-氯邻苯二酚和3-甲基邻苯二酚,从而使生物体能够同时使用氯代芳香族化合物和甲基芳香族化合物来生长。克隆并测序了菌株GJ31的基因组DNA的3.1 kb区域,其中含有该氯邻苯二酚2,3-双加氧酶( cbzE )的基因。 cbzE 基因似乎在质粒中定位,并发现在一个区域内,该区域还含有编码转座酶的基因,即与XylT同源的铁氧还蛋白,该开放阅读框与aem蛋白质相似功能未知的> met 裂解途径和2-羟基粘康半醛脱氢酶。 CbzE最类似于1型二元二醇双加氧酶2.C亚家族的儿茶酚2,3-二加氧酶(L. D. Eltis和J. T. Bolin,J. Bacteriol。178:5930-5937,1996)。确定了CbzE和四种相关的邻苯二酚2,3-二加氧酶的底物范围和3-氯邻苯二酚的转换能力。结果表明,CbzE是唯一可以有效转化3-氯邻苯二酚的酶。此外,CbzE不易被甲基化的儿茶酚灭活。由CzbE和 P的儿茶酚2,3-二加氧酶组成的杂合酶。 putida UCC2(TdnC)表明,CbzE对自杀灭活的抗性及其底物​​特异性主要由蛋白质的C端区域决定。

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