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A Thermostable Bilirubin-Oxidizing Enzyme from Activated Sludge Isolated by a Metagenomic Approach

机译:通过基因组学方法分离的活性污泥中的热稳定胆红素氧化酶

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摘要

A gene coding for a multicopper oxidase (BopA) was identified through the screening of a metagenomic library constructed from wastewater treatment activated sludge. The recombinant BopA protein produced in Escherichia coli exhibited oxidation activity toward 2,2′-azino-bis-(3-ethylbenzothiazoline-6-sulfonate) (ABTS) in the presence of copper, suggesting that BopA is laccase. A bioinformatic analysis of the bopA gene sequence indicated that it has a phylogenetically bacterial origin, possibly derived from a bacterium within the phylum Deinococcus-Thermus. Purified BopA exhibited maximum activity at pH 7.5 with bilirubin as its substrate and was found to be active over a markedly broad pH range from 6 to 11. It also showed notable thermostability; its activity remained intact even after a heat treatment at 90°C for 60 min. This enzyme is a thermostable-bilirubin oxidase that exhibits markedly higher thermostability than that previously reported for laccases.
机译:通过筛选由废水处理活性污泥构建的宏基因组文库,鉴定出编码多铜氧化酶(BopA)的基因。在铜存在下,在大肠杆菌中产生的重组BopA蛋白表现出对2,2'-叠氮基双-(3-乙基苯并噻唑啉-6-磺酸盐)(ABTS)的氧化活性,表明BopA是漆酶。对bopA基因序列的生物信息学分析表明,它具有系统发育上的细菌起源,可能源自Deinococcus-Thermus门下的细菌。纯化的BopA在以胆红素为底物的pH值为7.5时表现出最大的活性,并且发现在6到11的宽pH范围内都具有活性。即使在90°C热处理60分钟后,其活性仍保持完整。该酶是热稳定的胆红素氧化酶,其热稳定性比以前报道的漆酶高。

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