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Molecular Cloning and Expression of Genes Encoding a Novel Dioxygenase Involved in Low- and High-Molecular-Weight Polycyclic Aromatic Hydrocarbon Degradation in Mycobacterium vanbaalenii PYR-1

机译:凡高分枝杆菌PYR-1中涉及低高分子量多环芳烃降解的新型双加氧酶基因的分子克隆与表达

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摘要

Mycobacterium vanbaalenii PYR-1 is able to metabolize a wide range of low- and high-molecular-weight (HMW) polycyclic aromatic hydrocarbons (PAHs). A 20-kDa protein was upregulated in PAH-metabolizing M. vanbaalenii PYR-1 cells compared to control cultures. The differentially expressed protein was identified as a β subunit of the terminal dioxygenase using mass spectrometry. PCR with degenerate primers designed based on de novo sequenced peptides and a series of plaque hybridizations were done to screen the M. vanbaalenii PYR-1 genomic library. The genes, designated nidA3B3, encoding the α and β subunits of terminal dioxygenase, were subsequently cloned and sequenced. The deduced enzyme revealed close similarities to the corresponding PAH ring-hydroxylating dioxygenases from Mycobacterium and Rhodococcus spp. but had the highest similarity, 61.9%, to the α subunit from Nocardioides sp. strain KP7. The α subunit also showed 52% sequence homology with the previously reported NidA from M. vanbaalenii PYR-1. The genes nidA3B3 were subcloned into the expression vector pET-17b, and the enzyme activity in Escherichia coli cells was reconstituted through coexpression with the ferredoxin (PhdC) and ferredoxin reductase (PhdD) genes of the phenanthrene dioxygenase from Nocardioides sp. strain KP7. The recombinant PAH dioxygenase appeared to favor the HMW PAH substrates fluoranthene, pyrene, and phenanthrene. Several other PAHs, including naphthalene, anthracene, and benz[a]anthracene, were also converted to their corresponding cis-dihydrodiols. The recombinant E. coli, however, did not show any dioxygenation activity for phthalate and biphenyl. The upregulation of nidA3B3 in M. vanbaalenii PYR-1 induced by PAHs was confirmed by reverse transcription-PCR analysis.
机译:Vanbaalenii分枝杆菌PYR-1能够代谢多种低分子量和高分子量(HMW)多环芳烃(PAH)。与对照培养相比,PAH代谢的南美白对虾PYR-1细胞中的20 kDa蛋白上调。使用质谱法将差异表达的蛋白质鉴定为末端双加氧酶的β亚基。用基于从头测序的肽设计的简并引物进行PCR,并进行一系列噬菌斑杂交,以筛选van.albaenii PYR-1基因组文库。随后克隆了编码末端双加氧酶的α和β亚基的基因,命名为nidA3B3。推导的酶显示与分枝杆菌和红球菌属的相应PAH环羟化双加氧酶非常相似。但与Nocardioides sp。的α亚基的相似性最高,为61.9%。菌株KP7。该α亚基也显示出与先前报道的来自vanbaalenii PYR-1的NidA的52%序列同源性。将nidA3B3基因亚克隆到表达载体pET-17b中,并通过与Nocardioides sp。的菲双氧合酶的铁氧还蛋白(PhdC)和铁氧还蛋白还原酶(PhdD)基因共表达,重建大肠杆菌细胞中的酶活性。菌株KP7。重组PAH双加氧酶似乎偏爱HMW PAH底物荧蒽,pyr和菲。其他几种PAH,包括萘,蒽和苯并[a]蒽,也被转化为它们相应的顺式二氢二醇。然而,重组大肠杆菌对邻苯二甲酸酯和联苯没有显示任何双加氧活性。通过逆转录-PCR分析证实了PAHs诱导的vanbalenii PYR-1中nidA3B3的上调。

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