Piovant M, Lazdunski C
Biochemistry. 1975 May 6;14(9):1821-5. doi: 10.1021/bi00680a003.
In this study we have tried to answer the following questions: (1) is it possible for different catabolite-repressible genes, although submitted to the same control, to be expressed selectively depending upon the growth conditions, and (2) what is the effect of increasing the osmolarity of the medium on the intracellular level of cAMP? Two conditions were found to cause a continuous variation of intracellular cAMP levels during growth. With different strains, higher cAMP levels are required for induction of the tryptophanase gene than one required for induction of the lactose operon. cAMP has been provided externally in adenyl cyclase minus cells of a mutant that has been made permeable by EDTA treatment. Although external cAMP concentrations, 10 times higher than the usual intracellular levels, are required for induction of beta-galactosidase and tryptophanase, the difference of requirements of cAMP is maintained. An increase in the osmolarity of the medium by sucrose addition causes a fourfold decrease in the intracellular cAMP level. As a consequence this prevents the induction of tryptophanase whereas beta-galactosidase is still inducible. After pulse induction, a difference in the kinetics of expression of the tryptophanase and beta-galactosidase genes was found. Its relationship with the previous results is discussed.
在本研究中,我们试图回答以下问题:(1)不同的分解代谢物阻遏基因,尽管受相同的调控,是否有可能根据生长条件选择性表达?(2)培养基渗透压的增加对细胞内cAMP水平有何影响?我们发现有两个条件会导致生长过程中细胞内cAMP水平持续变化。对于不同的菌株,诱导色氨酸酶基因所需的cAMP水平高于诱导乳糖操纵子所需的水平。在经EDTA处理而具有通透性的突变体的腺苷酸环化酶缺失细胞中,已从外部提供了cAMP。尽管诱导β-半乳糖苷酶和色氨酸酶需要比通常细胞内水平高10倍的外部cAMP浓度,但对cAMP需求的差异仍然存在。通过添加蔗糖增加培养基的渗透压会导致细胞内cAMP水平降低四倍。因此,这会阻止色氨酸酶的诱导,而β-半乳糖苷酶仍可被诱导。脉冲诱导后,发现色氨酸酶和β-半乳糖苷酶基因的表达动力学存在差异。本文讨论了其与先前结果的关系。