Bozzone D M, Berger E A
Differentiation. 1987;33(3):197-206. doi: 10.1111/j.1432-0436.1987.tb01558.x.
Cyclic AMP (cAMP) is known to be an important mediator of gene expression in eukaryotic cells. At present, little is known about the developmental events which render specific genes responsive to cAMP in distinct cell types, or about the biochemical mechanisms by which cAMP exerts these regulatory effects. By examining the effects of cAMP treatment on specific mRNA levels in Dictyostelium discoideum cells with different 'developmental histories', we defined the developmental states in which specific genes display responsiveness to cAMP. We focused on two specific rapid responses: the ability of cAMP to inhibit the expression of an 'early' developmentally regulated mRNA (discoidin-I) and to stimulate the expression of a 'late', prespore-specific mRNA (PL3). Using this approach, we showed that, for both mRNAs, the ability to respond rapidly to cAMP is absent from vegetative cells grown on bacteria, and is acquired during development on filters. Furthermore, we identified several developmental states in which the discoidin-I response to cAMP is present, but in which the PL3 response is not. In experiments designed to examine the effects of cAMP analogues on the levels of these two mRNAs, we demonstrated that the analogue specificities of the discoidin-I and PL3 responses are different, and that the specificity for the PL3 response depends on the developmental state. The developmental kinetics and analogue specificity of the PL3 response suggest a two-step mode of action of cAMP in activating the expression of this gene. We discuss possible implications of these findings for the mechanisms of action of exogenous cAMP as well as for the role of cAMP in controlling the changes in gene expression that accompany normal development.
环磷酸腺苷(cAMP)是真核细胞中基因表达的重要调节因子。目前,对于使特定基因在不同细胞类型中对cAMP产生反应的发育事件,以及cAMP发挥这些调节作用的生化机制,我们了解甚少。通过研究cAMP处理对具有不同“发育历史”的盘基网柄菌细胞中特定mRNA水平的影响,我们确定了特定基因对cAMP产生反应的发育状态。我们重点关注了两种特定的快速反应:cAMP抑制“早期”发育调控mRNA(盘状蛋白-I)表达以及刺激“晚期”前孢子特异性mRNA(PL3)表达的能力。通过这种方法,我们发现,对于这两种mRNA,在以细菌为食的营养细胞中不存在对cAMP快速反应的能力,而在滤膜上发育过程中获得了这种能力。此外,我们确定了几种发育状态,其中盘状蛋白-I对cAMP有反应,但PL3没有反应。在旨在研究cAMP类似物对这两种mRNA水平影响的实验中,我们证明盘状蛋白-I和PL3反应的类似物特异性不同,并且PL3反应的特异性取决于发育状态。PL3反应的发育动力学和类似物特异性表明cAMP在激活该基因表达时有两步作用模式。我们讨论了这些发现对外源cAMP作用机制以及cAMP在控制正常发育过程中基因表达变化的作用的可能影响。