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In vitro formation of a catabolic plasmid carrying Klebsiella pneumoniae DNA that allows growth of Escherichia coli K-12 on 3-hydroxybenzoate

机译:体外形成携带肺炎群岛肺炎的肺炎群岛DNA,其允许在3-羟基苯甲酸酯上进行大肠杆菌K-12的生长

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The four enzymes needed to convert 3-hydroxybenzoate to pyruvate and fumarate via the gentisate pathway, as well as a putative positive regulator protein, were encoded on an 8 kb SphI fragment of Klebsiella pneumoniae DNA. The five genes were clustered in the order regulator-gentisate dioxygenase-fumarylpyruvate hydrolase-3-hydroxybenzoate monooxygenase-maleylpyruvate isomerase (mhbRDHMI), with the catabolic genes transcribed in the dioxygenase to isomerase direction. 2-Hydroxybenzoate was found to be a non-metabolizable inducer analogue for the mhb genes, supporting the view that gentisate rather than maleylpyruvate was the physiological inducer. The plasmid pNDR20 encoding the full gentisate catabolic pathway endowed Escherichia coli with the ability to grow on 3-hydroxybenzoate but the host cell appeared to be responsible for substrate uptake.
机译:将3-羟基苯甲酸盐转化为丙酮酸和富马酸盐的四种酶,以及推定的阳性调节剂蛋白,在Klebsiella肺炎群DNA的8kb Sphi片段上编码。将五种基因聚集在顺序调节剂 - 硫代酸盐二氧基酶 - 富马嘧啶水解酶-3-羟基苯甲酸盐单氧基酶 - 马来氧酶(MHBRDHMI)中,用脱氧基因转录到异构酶方向上。发现2-羟基苯甲酸酯是MHB基因的不可代谢的诱导剂类似物,支持该视野,即凸起而不是马来的吡喃酸酯是生理诱导剂。编码全温酸酯分解代谢途径的质粒PNDR20赋予大肠杆菌,具有在3-羟基苯甲酸酯上生长的能力,但宿主细胞似乎负责底物吸收。

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