Perretta M, Valladares L, Garrido F, Valenzuela D, Ludwig U
Arch Biol Med Exp. 1979 Oct;12(3):309-18.
Hormones play a role in the regulation of gene expression by inducing changes in enzyme patterns in target cells mediated by the synthesis of specific RNA molecules. Erythropoiesis has been used as a system for studying the molecular mechanism of regulation of gene action by means of two hormones: erythropoietin and testosterone. Experiments designed to correlate the biochemical action of both hormones on rat marrow cells are herein reported. Both factors seems to act at different biochemical and citological levels. Erythropoietin triggers the erythropoietic process acting on the erythropoietin sensitive cells (ESC), in which the hormone induces the synthesis of a high molecular weight RNA, which is the precursor of a functional 9 S messenger RNA. Testosterone seems to act on polychromatophilic erythroblasts, in which the synthesis of ribosomal RNA or its precursor is stimulated. The steroid enhances the nuclear ribonuclease activity, which could represent a control mechanism for the processing (maturation) of high molecular weight RNAs. The incorporation of 3H-GTP and 3H-UTP into RNA by isolated rat bone marrow nuclei is stimulated by erythropoietin and testosterone. Using alpha-amanitine and different ionic strength conditions it was found that erythropoietin enhances preferentially RNA polymerase II activity while testosterone increases RNA polymerase I activity. It is postulated that erythropoietin and testosterone act synergically to create the biochemical machinery for hemoglobin synthesis, the macromolecule that characterizes the erythropoietic process.
激素通过诱导特定RNA分子合成介导的靶细胞酶模式变化,在基因表达调控中发挥作用。红细胞生成已被用作研究两种激素(促红细胞生成素和睾酮)对基因作用调控分子机制的系统。本文报道了旨在关联这两种激素对大鼠骨髓细胞生化作用的实验。这两种因子似乎在不同的生化和细胞学水平上起作用。促红细胞生成素作用于促红细胞生成素敏感细胞(ESC),触发红细胞生成过程,在该细胞中,该激素诱导合成一种高分子量RNA,它是功能性9S信使RNA的前体。睾酮似乎作用于多染性成红细胞,刺激核糖体RNA或其前体的合成。该类固醇增强核糖核酸酶活性,这可能代表高分子量RNA加工(成熟)的一种控制机制。促红细胞生成素和睾酮刺激分离的大鼠骨髓细胞核将3H-GTP和3H-UTP掺入RNA。使用α-鹅膏蕈碱和不同离子强度条件,发现促红细胞生成素优先增强RNA聚合酶II活性,而睾酮增加RNA聚合酶I活性。据推测,促红细胞生成素和睾酮协同作用,以创建用于血红蛋白合成的生化机制,血红蛋白是红细胞生成过程的特征大分子。