首页> 外文OA文献 >Molecular cloning, characterization, and regulation of a Pseudomonas pickettii PKO1 gene encoding phenol hydroxylase and expression of the gene in Pseudomonas aeruginosa PAO1c.
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Molecular cloning, characterization, and regulation of a Pseudomonas pickettii PKO1 gene encoding phenol hydroxylase and expression of the gene in Pseudomonas aeruginosa PAO1c.

机译:铜绿假单胞菌(Pseudomonas pickettii)PKO1基因编码酚羟化酶的分子克隆,表征和调控,以及该基因在铜绿假单胞菌PAO1c中的表达。

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摘要

A 26-kilobase BamHI restriction endonuclease DNA fragment was cloned from Pseudomonas pickettii PKO1, a strain isolated from a soil microcosm that had been amended with benzene, toluene, and xylene. This DNA fragment, cloned into vector plasmid pRO1727 and designated pRO1957, allowed Pseudomonas aeruginosa PAO1c to grow on phenol as the sole source of carbon. Physical and functional restriction endonuclease maps have been derived for the cloned DNA fragment. Two DNA fragments carried in trans and derived from subclones of pRO1957 show phenol hydroxylase activity in cell extracts of P. aeruginosa. Deletion and subcloning analyses of these fragments indicated that the gene encoding phenol hydroxylase is positively regulated. Phenol and m-cresol were shown to be inducers of the enzyme. o-Cresol and p-cresol did not induce enzymatic activity but could be metabolized by cells that had been previously exposed to phenol or m-cresol; moreover, the enzyme exhibited a rather broad substrate specificity and was sensitive to thiol-inhibiting reagents. A novel polypeptide with an estimated molecular mass of 80,000 daltons was detected in extracts of phenol-induced cells of P. aeruginosa carrying plasmid pRO1959.
机译:从pseudomonas pickettii PKO1克隆了一个26碱基对的BamHI限制性核酸内切酶DNA片段,该菌株是从土壤微观世界中分离的一种菌株,该菌株已用苯,甲苯和二甲苯进行了修饰。将该DNA片段克隆到载体质粒pRO1727中并命名为pRO1957,使铜绿假单胞菌PAO1c可以在苯酚上作为唯一碳源生长。已为克隆的DNA片段绘制了物理和功能限制核酸内切酶图。 pRO1957亚克隆的反式和衍生的两个DNA片段在铜绿假单胞菌的细胞提取物中显示酚羟化酶活性。这些片段的缺失和亚克隆分析表明,编码酚羟化酶的基因受到正调控。已显示苯酚和间甲酚是该酶的诱导剂。邻甲酚和对甲酚不会诱导酶活性,但可以被先前接触过苯酚或间甲酚的细胞代谢。此外,该酶表现出相当宽的底物特异性,并且对硫醇抑制剂敏感。在携带质粒pRO1959的铜绿假单胞菌的酚诱导细胞提取物中检测到一种估计分子量为80,000道尔顿的新型多肽。

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    Kukor, J J; Olsen, R H;

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  • 年度 1990
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