Gershanovich V N, Iurovitskaia N V, Komissarova L V, Bol'shakova T N, Erlagaeva R S
Mol Biol (Mosk). 1976 Jan-Feb;10(1):216-23.
The phenomenon of glucose catabolite repression was studied in E. coli mutants inable to transport this carbohydrate. The pts 1, H mutant P34 was much less sensitive to the repressive effect of glucose on beta-galactosidase synthesis than the parent type. The 1103 mutant devoid of enzyme 1 of the phosphoenolpyruvate-dependent phosphotransferase system (PTS) behaves in the same way as P34 mutant after addition of glucose to casamino acid mineral medium. However, in minimal medium with succinate as the sole source of carbon, cells of the 1103 mutant show enhanced sensibility to transient glucose repression. The effect of hypersensibility disappears when the lac I mutation leading to constitutive the beta-galactosidase synthesis is introduced in 1103 mutant. It is shown that the enhanced sensibility of beta-galactosidase synthesis to glucose transient repression in 1103 mutant is an effect of the aburpt decrease in its growth rate in the presence of succinate and most probably this decrease leads to "inducer exclusion" of the lac operon. It is also shown that if one introduces the P34 mutation in strain JD3 devoid of one of the enzymes II for glucose (and due to this resistant to glucose catabolite respression) then the level of resistance in double mutant does not increase in spite of considerable supression of 14C glucose accumulation. In connection with this the role is discussed of separate components of the E. coli K 12 glucose transport system in realization of the phenomenon of catabolite repression.
在无法转运这种碳水化合物的大肠杆菌突变体中研究了葡萄糖分解代谢物阻遏现象。pts 1、H突变体P34对葡萄糖对β-半乳糖苷酶合成的阻遏作用的敏感性远低于亲本类型。缺乏磷酸烯醇丙酮酸依赖性磷酸转移酶系统(PTS)的酶1的1103突变体,在向酪蛋白氨基酸矿物培养基中添加葡萄糖后,其行为与P34突变体相同。然而,在以琥珀酸盐作为唯一碳源来源的基本培养基中,1103突变体的细胞对短暂葡萄糖阻遏表现出增强的敏感性。当导致β-半乳糖苷酶合成组成型的lac I突变引入1103突变体时,超敏效应消失。结果表明,1103突变体中β-半乳糖苷酶合成对葡萄糖短暂阻遏的增强敏感性是其在琥珀酸盐存在下生长速率突然下降的结果,很可能这种下降导致了lac操纵子的“诱导物排除”。还表明,如果在缺乏葡萄糖的一种酶II(因此对葡萄糖分解代谢物阻遏有抗性)的JD3菌株中引入P34突变,那么尽管14C葡萄糖积累受到相当大的抑制,双突变体的抗性水平也不会增加。与此相关,讨论了大肠杆菌K 12葡萄糖转运系统的各个组分在分解代谢物阻遏现象实现中的作用。