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首页> 外文期刊>Journal of Bioscience and Bioengineering >Diversity of 2,3-Dihydroxybiphenyl Dioxygenase Genes in a Strong PCB Degrader, Rhodococcus sp. Strain RHA1
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Diversity of 2,3-Dihydroxybiphenyl Dioxygenase Genes in a Strong PCB Degrader, Rhodococcus sp. Strain RHA1

机译:强PCB降解菌Rhodococcus sp。中2,3-二羟基联苯双加氧酶基因的多样性。菌株RHA1

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摘要

Two 2,3-dihydroxybiphenyl (23DHBP) dioxygenase genes, bphC1 and etbC involved in the degradation of polychlorinated biphenyl(s) (PCBs) have been isolated and characterized from a strong PCB degrader, Rhodococcus sp. RHA1. In this study, four new 23DHBP dioxygenase genes, designated as bphC2, bphC3, bphC4, and bphC5 were isolated from RHA1, and their nucleotide sequences were determined. Based on amino acid sequence similarities, all of the newly isolated bphC genes could be categorized into type I along with BphC1 and EtbC [Eltis, L. D. and Bolin, J. t., J. Bacteriol., 178, 5930-5937 (1996)]. Six bphC genes,including bphC1, etbC, and four new genes, were expressed in Escherichia coli to determine their substrate specificity. The activities of BphC2, BphC3, BphC4, and BphC5 were found to be specific to 23DHBP, including catechol (CAT) and 3-methylcatechol (3MC). RNA slot blot hybridization analysis indicated that only bphC5 was transcribed among the newlyisolated bphC in RHA1 cells grown on biphenyl and ethylbenzene. The nucleotide sequence of the flanking region of each bphC revealed a homolog of the 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoate (HOPD) hydrolase gene, bphD, just upstream of bphC5. The phyC5 and putative bphD genes may constitute an operon and play a role in the degradation of biphenyl and PCBs together with bphC1 and bphC. In contrast, the bphC2, bphC3, and bphC4 genes may not be involved in biphenyl and PCB degradation.
机译:已经从一个强大的PCB降解菌Rhodococcus sp。中分离并鉴定了涉及多氯联苯(PCB)降解的两个2,3-二羟基联苯(23DHBP)双加氧酶基因bphC1和etbC。 RHA1。在这项研究中,从RHA1中分离了四个新的23DHBP双加氧酶基因,分别命名为bphC2,bphC3,bphC4和bphC5,并确定了它们的核苷酸序列。根据氨基酸序列的相似性,所有新分离的bphC基因可与BphC1和EtbC一起归为I型[Eltis,LD和Bolin,J. t。,J. Bacteriol。,178,5930-5937(1996) ]。在大肠杆菌中表达了六个bphC基因,包括bphC1,etbC和四个新基因,以确定它们的底物特异性。发现BphC2,BphC3,BphC4和BphC5的活性对23DHBP具有特异性,包括邻苯二酚(CAT)和3-甲基邻苯二酚(3MC)。 RNA槽印迹杂交分析表明,在联苯和乙苯上生长的RHA1细胞中,新分离的bphC中仅转录了bphC5。每个bphC侧翼区域的核苷酸序列显示了bphC5上游的2-羟基-6-氧代-6-苯基己-2,4-二烯酸(HOPD)水解酶基因bphD的同源物。 phyC5和推定的bphD基因可能构成操纵子,并与bphC1和bphC一起在联苯和PCB的降解中发挥作用。相反,bphC2,bphC3和bphC4基因可能不参与联苯和PCB降解。

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