Sato T, Palasi C V, Huang L, Tang G, Larner A C, Larner J
Department of Pharmacology, University of Virginia Medical School, Charlottesville 22908.
Endocrinology. 1988 Sep;123(3):1559-64. doi: 10.1210/endo-123-3-1559.
We have previously shown that in rat H4 hepatoma cells insulin enhances the nuclear transcription of p33 mRNA in a dose- and time-dependent manner, with no alteration in mRNA half-time (t1/2). Presumably, this effect is mediated by the cell surface receptor. In this report, we have investigated the effect of putative insulin mediator fractions which act to control metabolic events on p33 mRNA accumulation in these cells. Initial experiments originally demonstrated an insulin-like effect of an added putative metabolic fraction to enhance p33 mRNA concentrations. However, when the fetal calf serum supply was changed, the effect of insulin remained, but that of added mediator was no longer observed. After a series of experimental approaches designed to alter the permeability of the cell membrane, it was found that in the presence of increased Ca2+, the effect of mediator could again be observed. The present data demonstrate that the partially purified cAMP-dependent protein kinase/adenylate cyclase inhibitory putative mediator fractions from liver and muscle enhance p33 mRNA accumulation in intact H4 hepatoma cells by a mechanism that is differentiated from that of insulin. The action of the putative mediator is inhibited by cycloheximide, while the action of insulin itself is not. These results suggest that insulin may control nuclear transcription by multiple signaling mechanisms. Alternatively, the added putative metabolic mediator may not enter the cell in the presence of cycloheximide or is inactive as such within the cell and must first be converted to an active species by a step requiring protein synthesis.
我们之前已经表明,在大鼠H4肝癌细胞中,胰岛素以剂量和时间依赖性方式增强p33 mRNA的核转录,而mRNA半衰期(t1/2)没有改变。据推测,这种作用是由细胞表面受体介导的。在本报告中,我们研究了假定的胰岛素介质组分对这些细胞中p33 mRNA积累的影响,这些介质组分可控制代谢事件。最初的实验表明,添加的假定代谢组分具有胰岛素样作用,可提高p33 mRNA浓度。然而,当改变胎牛血清供应时,胰岛素的作用仍然存在,但添加介质的作用不再观察到。在一系列旨在改变细胞膜通透性的实验方法之后,发现当Ca2+增加时,介质的作用又可以观察到。目前的数据表明,从肝脏和肌肉中部分纯化的依赖cAMP的蛋白激酶/腺苷酸环化酶抑制性假定介质组分,通过一种不同于胰岛素的机制增强完整H4肝癌细胞中p33 mRNA的积累。假定介质的作用被放线菌酮抑制,而胰岛素本身的作用则不受抑制。这些结果表明,胰岛素可能通过多种信号机制控制核转录。或者,添加的假定代谢介质在放线菌酮存在下可能无法进入细胞,或者在细胞内无活性,必须首先通过需要蛋白质合成的步骤转化为活性物质。