Alonso A, Kotyk A
Folia Microbiol (Praha). 1978;23(2):118-25. doi: 10.1007/BF02915311.
Using incubation in the presence of 0.4 mM cycloheximide the half-lives of the principal membrane transport proteins in baker's yeast were found to be: more than 24 h for the constitutive glucose carrier, 2.2 h for the inducible galactose carrier, 1.2 h for the inducible maltose carrier and 0.8 h for the inducible alpha-methyl-D-glucoside carrier. The distinct nature of the two last-named carriers was thus supported. De-induction of the galactose carrier was enhanced in the presence of glucose plus cycloheximide but not of either substance alone. Chloramphenicol suppressed all effects of cycloheximide. In contrast to the enzymes of galactose metabolism, the induction of the glactose carrier was not under the control of a mitochondrial factor and took place in a rho-mutant. The system induced by maltose but not the one induced by alpha-methyl-D-glucoside was de-induced rapidly by the intervention of a cytoplasm-synthesized protein.
在0.4 mM放线菌酮存在的情况下进行孵育,发现面包酵母中主要膜转运蛋白的半衰期分别为:组成型葡萄糖载体超过24小时,诱导型半乳糖载体2.2小时,诱导型麦芽糖载体1.2小时,诱导型α-甲基-D-葡萄糖苷载体0.8小时。由此支持了后两种载体的独特性质。在葡萄糖加放线菌酮存在的情况下,半乳糖载体的去诱导作用增强,但单独使用这两种物质时则不然。氯霉素抑制了放线菌酮的所有作用。与半乳糖代谢酶不同,半乳糖载体的诱导不受线粒体因子的控制,并且在rho突变体中发生。麦芽糖诱导的系统而非α-甲基-D-葡萄糖苷诱导的系统,会因细胞质合成蛋白的干预而迅速去诱导。