Portalier R, Robert-Baudouy J, Stoeber F
J Bacteriol. 1980 Sep;143(3):1095-107. doi: 10.1128/jb.143.3.1095-1107.1980.
Two types of Escherichia coli K-12 regulatory mutants, partially or totally negative for the induction of the five catabolic enzymes (uronic isomerase, uxaC; altronate oxidized nicotinamide adenine dinucleotide: uxaB; mannonate hydrolyase, uxuA) and the transport system (exuT) of the hexuronate-inducible pathway, were isolated and analyzed enzymatically. Hexuronate-catabolizing revertants of the negative mutants showed a constitutive synthesis for some or all of these enzymes. Negative and constitutive mutations were localized in the same genetic locus, called exuR, and the following order for the markers situated between the min 65 and 68 was determined: argG--exuR--exuT--uxaC--uxaA--tolC. The enzymatic characterization of the pleiotropic negative and constitutive mutants of the exuR gene suggests that the exuR regulatory gene product exerts a specific and total control on the three exuT, uszB, and uxaC-uxaA operons of the galacturonate pathway and a partial control on the uxuA-uxuB operon of the glucuronate pathway. The analysis of diploid strains conatining both the wild type and a negative or constitutive allele of the exuR gene, as well as the analysis of thermosensitive mutants of the exuR gene, was in agreement with a negative regulatory mechanism for the control of the hexuronate system.
分离出了两种大肠杆菌K - 12调节突变体,它们对己糖醛酸诱导途径的五种分解代谢酶(糖醛酸异构酶,uxaC;阿卓糖酸氧化型烟酰胺腺嘌呤二核苷酸:uxaB;甘露糖酸水解酶,uxuA)和转运系统(exuT)的诱导部分或完全呈阴性,并对其进行了酶学分析。阴性突变体的己糖醛酸分解代谢回复突变体对部分或所有这些酶表现出组成型合成。阴性和组成型突变定位在同一个基因座,称为exuR,并且确定了位于65和68分钟之间的标记的以下顺序:argG--exuR--exuT--uxaC--uxaA--tolC。exuR基因的多效性阴性和组成型突变体的酶学特征表明,exuR调节基因产物对半乳糖醛酸途径的三个exuT、uszB和uxaC - uxaA操纵子发挥特异性和全面控制,对葡萄糖醛酸途径的uxuA - uxuB操纵子发挥部分控制。对含有野生型和exuR基因的阴性或组成型等位基因的二倍体菌株的分析,以及对exuR基因的温度敏感突变体的分析,与己糖醛酸系统控制的负调节机制一致。