Rumiantseva E V, Sukhodolets V V, Smirnov Iu V
Genetika. 1979;15(3):594-604.
By means of selection for a low thymine requirement the mutants fo thymine auxotrophs for deoxyriboaldolase (dra) and phosphodeoxyribomutase (drm) genes were obtained. Besides the mutants for pyrimidinenucleoside phosphorylase gene (pdp) were olso isolated using selection on the fluorodeoxyuridine resistance. The latter enzyme provides for pyrimidine nucleosides catabolism (thymidine, uridine) in Bacilli, as well as the conversion of exogenous thymine to thymidine in thymine auxotrophs. The data obtained when studying the deo-enzymes activities in various types of the mutants and also under the condition of induction by thymidine and acetoaldehyde are in accordance with the assumption that deoxyriboso-5-phosphate is an inductor of the deo-enzymes in Bacillus subtilis. The genes dra and pdp were tightly linked as it had been shown by the transformation experiments; in contrast, no linkage was revealed between dra and drm or pdp and drm. A secondary mutation (adn), not linked with dra and blocking the ability of bacteria to catabolise adenosine (purine nucleoside phosphorylase activity remains constant) was found in some dra-mutants.
通过筛选低胸腺嘧啶需求,获得了脱氧核糖醛缩酶(dra)和磷酸脱氧核糖变位酶(drm)基因的胸腺嘧啶营养缺陷型突变体。此外,利用对氟脱氧尿苷抗性的筛选还分离出了嘧啶核苷磷酸化酶基因(pdp)的突变体。后一种酶参与芽孢杆菌中嘧啶核苷(胸苷、尿苷)的分解代谢,以及胸腺嘧啶营养缺陷型中外源胸腺嘧啶向胸苷的转化。在研究各种类型突变体中的脱氧酶活性以及在胸苷和乙醛诱导条件下获得的数据符合以下假设:5-磷酸脱氧核糖是枯草芽孢杆菌中脱氧酶的诱导剂。如转化实验所示,dra和pdp基因紧密连锁;相反,dra与drm或pdp与drm之间未发现连锁关系。在一些dra突变体中发现了一个与dra不连锁的二次突变(adn),该突变阻断了细菌分解腺苷的能力(嘌呤核苷磷酸化酶活性保持不变)。