首页> 外文期刊>Biochimie >Purification, characterization, and substrate specificity of two 2,3-dihydroxybiphenyl 1,2-dioxygenase from Rhodococcus sp. R04, showing their distinct stability at various temperature
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Purification, characterization, and substrate specificity of two 2,3-dihydroxybiphenyl 1,2-dioxygenase from Rhodococcus sp. R04, showing their distinct stability at various temperature

机译:两种红球菌2,3-二羟基联苯1,2-二加氧酶的纯化,鉴定和底物特异性。 R04,在不同温度下显示出独特的稳定性

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The genes of two 2,3-dihydroxybiphenyl 1,2-dioxygenases (BphC1 and BphC2) were obtained from the gene library of Rhodococcus sp. R04. The enzymes have been purified to apparent electrophoretic homogeneity from the cell extracts of the recombinant harboring bphC1 and bphC2. Both BphC1 and BphC2 were hexamers, consisting of six subunits of 35 and 33 kDa as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, respectively. The enzymes had similar optimal pH (pH 9.0), but different temperatures for their maximum activity (30 ℃ for BphC1, 80 ℃ for BphC2). In addition, they exhibited distinct stability at various temperatures. The enzymes could cleave a wide range of catechols, with 2,3-dihydroxybiphenyl being the optimum substrate for BphC1 and BphC2. BphC1 was inhibited by 2,3-dihydroxybiphenyl, catechol and 3-chlorocatechol, whereas BphC2 showed strong substrate inhibition for all the given substrates. BphC2 exhibited a half-life of 15 min at 80 ℃ and 50 min at 70 ℃, making it the most thermostable extradiol dioxygenase studied in mesophilic bacteria. After disruption of bphC1 and bphC2 genes, R04△C1 (bphC1 mutant) delayed the time of their completely eliminating biphenyl another 15 h compared with its parent strain R04, but R04△C2 (bphC2 mutant) lost the ability to grow on biphenyl, suggesting that BphC1 plays an assistant role in the degrading of biphenyl by strain R04, while BphC2 is essential for the growth of strain R04 on biphenyl.
机译:两种2,3-二羟基联苯1,2-二加氧酶(BphC1和BphC2)的基因是从红球菌属的基因库中获得的。 R04。从具有bphC1和bphC2的重组细胞提取物中纯化出的酶具有明显的电泳均质性。 BphC1和BphC2均为六聚体,分别由十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,由35和33 kDa的六个亚基组成。这些酶的最佳pH值相似(pH 9.0),但最大活性却不同(BphC1为30℃,BphC2为80℃)。此外,它们在各种温度下均表现出独特的稳定性。这些酶可以裂解多种儿茶酚,其中2,3-二羟基联苯是BphC1和BphC2的最佳底物。 BphC1被2,3-二羟基联苯,儿茶酚和3-氯邻苯二酚抑制,而BphC2对所有给定的底物均表现出较强的底物抑制作用。 BphC2在80℃下的半衰期为15分钟,在70℃下的半衰期为50分钟,使其成为在嗜温细菌中研究的最热的外二醇双加氧酶。在破坏bphC1和bphC2基因后,R04△C1(bphC1突变体)比其亲本菌株R04延迟了将它们完全清除联苯的时间再延长了15小时,但R04△C2(bphC2突变体)失去了在联苯上生长的能力,这表明BphC1在菌株R04降解联苯中起辅助作用,而BphC2对于菌株R04在联苯上的生长至关重要。

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