首页> 美国卫生研究院文献>Journal of Bacteriology >Ribose catabolism of Escherichia coli: characterization of the rpiB gene encoding ribose phosphate isomerase B and of the rpiR gene which is involved in regulation of rpiB expression.
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Ribose catabolism of Escherichia coli: characterization of the rpiB gene encoding ribose phosphate isomerase B and of the rpiR gene which is involved in regulation of rpiB expression.

机译:大肠杆菌的核糖分解代谢:编码核糖磷酸异构酶B的rpiB基因和rpiR基因的表征这与rpiB表达的调节有关。

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摘要

Escherichia coli strains defective in the rpiA gene, encoding ribose phosphate isomerase A, are ribose auxotrophs, despite the presence of the wild-type rpiB gene, which encodes ribose phosphate isomerase B. Ribose prototrophs of an rpiA genetic background were isolated by two different approaches. Firstly, spontaneous ribose-independent mutants were isolated. The locus for this lesion, rpiR, was mapped to 93 min on the linkage map, and the gene order zje::Tn10-rpiR-mel-zjd::Tn10-psd-purA was established. Secondly, ribose prototrophs resulted from the cloning of the rpiB gene on a multicopy plasmid. The rpiB gene resided on a 4.6-kbp HindIII-EcoRV DNA fragment from phage lambda 10H5 (642) of the Kohara gene library and mapped at 92.85 min. Consistent with this map position, the cloned DNA fragment contained two divergent open reading frames of 149 and 296 codons, encoding ribose phosphate isomerase B (molecular mass, 16,063 Da) and a negative regulator of rpiB gene expression, RpiR (molecular mass, 32,341 Da), respectively. The 5' ends of rpiB- and rpiR-specified transcripts were located by primer extension analysis. No significant amino acid sequence similarity was found between ribose phosphate isomerases A and B, but ribose phosphate isomerase B exhibited high-level similarity to both LacA and LacB subunits of the galactose 6-phosphate isomerases of several gram-positive bacteria. Analyses of strains containing rpiA, rpiB, or rpiA rpiB mutations revealed that both enzymes were equally efficient in catalyzing the isomerization step in either direction and that the construction of rpiA rpiB double mutants was a necessity to fully prevent this reaction.
机译:尽管存在编码核糖磷酸异构酶B的野生型rpiB基因,但编码核糖磷酸异构酶A的rpiA基因缺陷的大肠杆菌菌株仍是核糖营养缺陷型。通过两种不同的方法分离了rpiA遗传背景的核糖原营养型。首先,分离自发的不依赖核糖的突变体。在连接图上将这个病变的基因座rpiR定位到93分钟,并建立了基因顺序zje :: Tn10-rpiR-mel-zjd :: Tn10-psd-purA。其次,核糖原养生物是由多拷贝质粒上的rpiB基因克隆产生的。 rpiB基因位于Kohara基因库的噬菌体λ10H5(642)的4.6 kbp HindIII-EcoRV DNA片段上,在92.85分钟定位。与该图位置一致,克隆的DNA片段包含两个分别为149和296密码子的开放阅读框,编码核糖磷酸异构酶B(分子量为16,063 Da)和rpiB基因表达的负调控子RpiR(分子量为32,341 Da)。 ), 分别。通过引物延伸分析确定rpiB和rpiR特异性转录本的5'端。在核糖磷酸异构酶A和B之间未发现明显的氨基酸序列相似性,但核糖磷酸异构酶B与几种革兰氏阳性细菌的半乳糖6-磷酸异构酶的LacA和LacB亚基均显示出高度相似性。包含rpiA,rpiB或rpiA rpiB突变的菌株的分析表明,两种酶在任一方向均能催化异构化步骤同样有效,并且rpiA rpiB双突变体的构建是充分防止该反应的必要条件。

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