Charnetzky W T, Mortlock R P
J Bacteriol. 1974 Jul;119(1):176-82. doi: 10.1128/jb.119.1.176-182.1974.
Klebsiella aerogenes strain W70 has separate inducible pathways for the degradation of the pentitols ribitol and d-arabitol. These pathways are closely linked genetically as determined by transduction with phage PW52. There are two regulatory sites for the ribitol catabolic pathway as defined by loci for mutations to constitutive synthesis of ribitol dehydrogenase and d-ribulokinase, rbtB and rbtC. The two control sites are separated by a site represented by the dalB22 mutation. This mutation deprives the cell of the ability to induce synthesis of d-arabitol dehydrogenase and d-xylulokinase activities. Two additional regulatory mutations for the d-arabitol pathway, dalC31 and dalC37, map to the opposite side of rbtB13 relative to dalB22. The order of the genetic sites thus far determined for this region is dalK-dalD-dalC31, dalC37-rbtB13-dalB22-rbtC14-rbtD-rbtK, where dalK and dalD represent structural genes for the kinase and dehydrogenase of the d-arabitol pathway, respectively, and rbtK and rbtD represent the corresponding genes for the ribitol pathway. The two mutations that lead to constitutive synthesis of the d-arabitol-induced enzymes, dalC31 and dalC37, have different phenotypes with regard to their response to xylitol. The growth of dalC31 is inhibited by xylitol, but the toxicity can be reduced by increasing the levels of ribitol dehydrogenase either by induction with ribitol or by selection of a ribitol dehydrogenase-constitutive mutation.
产气克雷伯菌菌株W70具有分别诱导的途径来降解戊糖醇核糖醇和D-阿拉伯糖醇。如通过噬菌体PW52转导所确定的,这些途径在遗传上紧密相连。核糖醇分解代谢途径有两个调控位点,由核糖醇脱氢酶和D-核糖激酶组成型合成突变的位点rbtB和rbtC所定义。这两个控制位点被dalB22突变所代表的位点隔开。该突变使细胞丧失诱导合成D-阿拉伯糖醇脱氢酶和D-木酮糖激酶活性的能力。D-阿拉伯糖醇途径的另外两个调控突变dalC31和dalC37,相对于dalB22定位于rbtB13的另一侧。到目前为止,该区域所确定的遗传位点顺序为dalK-dalD-dalC31、dalC37-rbtB13-dalB22-rbtC14-rbtD-rbtK,其中dalK和dalD分别代表D-阿拉伯糖醇途径的激酶和脱氢酶的结构基因,rbtK和rbtD代表核糖醇途径的相应基因。导致D-阿拉伯糖醇诱导酶组成型合成的两个突变dalC31和dalC37,在对木糖醇的反应方面具有不同的表型。dalC31的生长受到木糖醇的抑制,但通过用核糖醇诱导或选择核糖醇脱氢酶组成型突变来提高核糖醇脱氢酶的水平,可以降低毒性。