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Sequence Analysis and Initial Characterization of Two Isozymes of Hydroxylaminobenzene Mutase from Pseudomonas pseudoalcaligenes JS45

机译:拟假单胞菌JS45假单胞菌羟氨基苯突变酶的两个同工酶的序列分析和初步表征

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摘要

Pseudomonas pseudoalcaligenes JS45 grows on nitrobenzene by a partially reductive pathway in which the intermediate hydroxylaminobenzene is enzymatically rearranged to 2-aminophenol by hydroxylaminobenzene mutase (HAB mutase). The properties of the enzyme, the reaction mechanism, and the evolutionary origin of the gene(s) encoding the enzyme are unknown. In this study, two open reading frames (habA and habB), each encoding an HAB mutase enzyme, were cloned from a P. pseudoalcaligenes JS45 genomic library and sequenced. The open reading frames encoding HabA and HabB are separated by 2.5 kb and are divergently transcribed. The deduced amino acid sequences of HabA and HabB are 44% identical. The HAB mutase specific activities in crude extracts of Escherichia coli clones synthesizing either HabA or HabB were similar to the specific activities of extracts of strain JS45 grown on nitrobenzene. HAB mutase activity in E. coli extracts containing HabB withstood heating at 85°C for 10 min, but extracts containing HabA were inactivated when they were heated at temperatures above 60°C. HAB mutase activity in extracts of P. pseudoalcaligenes JS45 grown on nitrobenzene exhibited intermediate temperature stability. Although both the habA gene and the habB gene conferred HAB mutase activity when they were separately cloned and expressed in E. coli, reverse transcriptase PCR analysis indicated that only habA is transcribed in P. pseudoalcaligenes JS45. A mutant strain derived from strain JS45 in which the habA gene was disrupted was unable to grow on nitrobenzene, which provided physiological evidence that HabA is involved in the degradation of nitrobenzene. A strain in which habB was disrupted grew on nitrobenzene. Gene Rv3078 of Mycobacterium tuberculosis H37Rv encodes a protein whose deduced amino acid sequence is 52% identical to the HabB amino acid sequence. E. coli containing M. tuberculosis gene Rv3078 cloned into pUC18 exhibited low levels of HAB mutase activity. Sequences that exhibit similarity to transposable element sequences are present between habA and habB, as well as downstream of habB, which suggests that horizontal gene transfer resulted in acquisition of one or both of the hab genes.
机译:伪拟假单胞菌JS45通过部分还原途径在硝基苯上生长,其中中间体羟氨基苯被羟氨基苯变位酶(HAB变位酶)酶促重排为2-氨基苯酚。酶的特性,反应机理和编码该酶的基因的进化起源尚不清楚。在这项研究中,从假拟疟假单胞菌JS45基因组文库中克隆了两个开放阅读框(habA和habB),每个编码HAB突变酶。编码HabA和HabB的开放阅读框相距2.5 kb,并被不同地转录。推导的HabA和HabB氨基酸序列具有44%的同一性。合成HabA或HabB的大肠杆菌克隆粗提物中HAB突变酶的特异活性与在硝基苯上生长的JS45菌株的特异活性相似。含有HabB的大肠杆菌提取物中的HAB突变酶活性在85°C加热10分钟,但是将含有HabA的提取物在60°C以上加热时会失活。在硝基苯上生长的拟青假单胞菌JS45提取物中的HAB突变酶活性表现出中等温度稳定性。尽管当分别在大肠杆菌中克隆和表达habA基因和habB基因时,它们都赋予了HAB突变酶活性,但逆转录酶PCR分析表明在假拟假丝酵母JS45中仅转录了habA。 habA基因被破坏的源自菌株JS45的突变菌株无法在硝基苯上生长,这提供了生理学证据表明HabA参与了硝基苯的降解。 habB被破坏的菌株在硝基苯上生长。结核分枝杆菌H37Rv的基因Rv3078编码一种蛋白质,其推导的氨基酸序列与HabB氨基酸序列具有52%的同一性。含有 M的大肠杆菌。克隆到pUC18中的肺结核基因Rv3078的HAB突变酶活性较低。在 habA habB 之间以及 habB 的下游都存在与转座因子序列相似的序列,这表明水平基因转移导致捕获 hab 基因之一或全部。

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