Salganik R I, Pankova T G, Deribas V I, Igonina T M
Mol Cell Biochem. 1980 Feb 28;29(3):183-8. doi: 10.1007/BF00420289.
Estradiol is demonstrated to induce histidine decarboxylase, and histamine is shown to activate adenylate cyclase in rat uterus. Histamine and cyclic 3',5'-AMP mimic the effects of estradiol in that they enhance RNA synthesis, induce glycolytic enzymes and uterus imbibition. The data suggest that estradiol enhances by induction of histidine decarboxylase the formation of histamine, the latter activates adenylate cyclase providing accumulation of cyclic 3',5'-AMP, which, probably, induces glycolytic enzymes through phosphorylation of chromatin proteins, and mediates other estradiol effects. The chain of successively acting enzymes and mediators constitutes, obviously, a cascade amplifying estradiol action. Since histamine is known to act as an intercellular mediator, attempts were made to find out the distribution of estradiol histamine and cyclic 3',5'-AMP among uterus cells. Autoradiography has shown that [3H]-estradiol is bound by the nuclei of myometrium cells, [3H]-histamine was found above the cytoplasm of these cells, E13H]-cyclic 3',5'-AMP is selectively bound by the cells of capillary endothelium of the uterus. The estradiol mediators seem to spread effect of hormone on cells of different types which form together a kind of multicellular functional system.
已证实雌二醇可诱导组氨酸脱羧酶,且组胺可激活大鼠子宫中的腺苷酸环化酶。组胺和环3',5'-AMP模拟雌二醇的作用,因为它们可增强RNA合成、诱导糖酵解酶并促进子宫吸水。数据表明,雌二醇通过诱导组氨酸脱羧酶来增强组胺的形成,后者激活腺苷酸环化酶,使环3',5'-AMP积累,环3',5'-AMP可能通过染色质蛋白的磷酸化诱导糖酵解酶,并介导雌二醇的其他作用。这一系列相继起作用的酶和介质显然构成了一个放大雌二醇作用的级联反应。由于已知组胺可作为细胞间介质,因此人们试图弄清楚雌二醇、组胺和环3',5'-AMP在子宫细胞中的分布情况。放射自显影显示,[3H] - 雌二醇与子宫肌层细胞核结合,在这些细胞的细胞质上方发现了[3H] - 组胺,[3H] - 环3',5'-AMP被子宫毛细血管内皮细胞选择性结合。雌二醇介质似乎将激素的作用扩散到不同类型的细胞上,这些细胞共同构成了一种多细胞功能系统。