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Molecular Cloning Nucleotide Sequence and Expression of Genes Encoding a Polycyclic Aromatic Ring Dioxygenase from Mycobacterium sp. Strain PYR-1

机译:分子克隆核苷酸序列和编码分枝杆菌多环芳环加氧酶基因的表达。 PYR-1菌株

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摘要

Mycobacterium sp. strain PYR-1 degrades high-molecular-weight polycyclic hydrocarbons (PAHs) primarily through the introduction of both atoms of molecular oxygen by a dioxygenase. To clone the dioxygenase genes involved in PAH degradation, two-dimensional (2D) gel electrophoresis of PAH-induced proteins from cultures of Mycobacterium sp. strain PYR-1 was used to detect proteins that increased after phenanthrene, dibenzothiophene, and pyrene exposure. Comparison of proteins from induced and uninduced cultures on 2D gels indicated that at least six major proteins were expressed (105, 81, 52, 50, 43, and 13 kDa). The N-terminal sequence of the 50-kDa protein was similar to those of other dioxygenases. A digoxigenin-labeled oligonucleotide probe designed from this protein sequence was used to screen dioxygenase-positive clones from a genomic library of Mycobacterium sp. strain PYR-1. Three clones, each containing a 5,288-bp DNA insert with three genes of the dioxygenase system, were obtained. The genes in the DNA insert, from the 5′ to the 3′ direction, were a dehydrogenase, the dioxygenase small (β)-subunit, and the dioxygenase large (α)-subunit genes, arranged in a sequence different from those of genes encoding other bacterial dioxygenase systems. Phylogenetic analysis showed that the large α subunit did not cluster with most of the known α-subunit sequences but rather with three newly described α subunits of dioxygenases from Rhodococcus spp. and Nocardioides spp. The genes from Mycobacterium sp. strain PYR-1 were subcloned and overexpressed in Escherichia coli with the pBAD/ThioFusion system. The functionality of the genes for PAH degradation was confirmed in a phagemid clone containing all three genes, as well as in plasmid subclones containing the two genes encoding the dioxygenase subunits.
机译:分枝杆菌PYR-1菌株主要通过双加氧酶引入分子氧的两个原子来降解高分子量多环烃(PAH)。要克隆与PAH降解有关的双加氧酶基因,需对分枝杆菌属物种培养物中PAH诱导的蛋白质进行二维(2D)凝胶电泳。 PYR-1菌株用于检测菲,二苯并噻吩和pyr暴露后增加的蛋白质。在2D凝胶上比较诱导和未诱导培养物中蛋白质的过程表明,至少表达了6种主要蛋白质(105、81、52、50、43和13 kDa)。 50-kDa蛋白的N端序列与其他双加氧酶类似。由该蛋白质序列设计的地高辛配基标记的寡核苷酸探针用于从分枝杆菌属物种的基因组文库中筛选双加氧酶阳性克隆。菌株PYR-1。获得了三个克隆,每个克隆包含具有双加氧酶系统的三个基因的5,288-bp DNA插入片段。从5'到3'方向的DNA插入片段中的基因是脱氢酶,双加氧酶小(β)亚基和双加氧酶大(α)亚基基因,其排列顺序与基因顺序不同编码其他细菌双加氧酶系统。系统发育分析表明,大的α亚基不与大多数已知的α-亚基序列聚集,而是与红球菌属的双加氧酶的三个新描述的α亚基聚集。和诺卡氏菌属。来自分枝杆菌属的基因。用pBAD / ThioFusion系统亚克隆PYR-1菌株并在大肠杆菌中过表达。在包含所有三个基因的噬菌粒克隆以及在包含编码双加氧酶亚基的两个基因的质粒亚克隆中,证实了用于PAH降解的基因的功能。

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