Persson L, Nilsson M, Rosengren E
J Endocrinol. 1985 Oct;107(1):83-7. doi: 10.1677/joe.0.1070083.
The biosynthesis of polyamines, an ubiquitous group of amines shown to be essential for normal cellular growth and differentiation, was studied in the rat anterior pituitary gland during the different stages of the oestrous cycle. The activity of ornithine decarboxylase (ODC), which catalyses the rate-limiting step in the biosynthesis of polyamines, was low during oestrus, metoestrus and dioestrus. However, a marked transitory rise in ODC activity was found in the pituitary gland on the evening of pro-oestrus. The rise in ODC activity was accompanied by an increase in the pituitary content of the polyamines putrescine and spermidine. Ovariectomy did not significantly change the basal ODC activity in the pituitary gland. Oestrogen treatment of ovariectomized rats resulted in a marked stimulation of pituitary polyamine biosynthesis. The largest effects were observed when oestrogen was given as two injections 72 h apart, which gave rise to levels of ODC activity comparable to those observed on the evening of pro-oestrus. The increase in polyamine synthesis in the anterior pituitary gland during pro-oestrus appeared not to be related to the preovulatory secretion of LH or prolactin, since neither LH-releasing hormone nor thyrotrophin-releasing hormone (which induces a secretion of prolactin) affected pituitary ODC activity. The observed biosynthesis of polyamines may be associated with the cellular proliferation which occurs in the anterior pituitary gland at oestrus.
多胺是一类普遍存在的胺,对正常细胞生长和分化至关重要,本研究在大鼠动情周期的不同阶段,对其前脑垂体中的多胺生物合成进行了研究。鸟氨酸脱羧酶(ODC)催化多胺生物合成的限速步骤,其活性在发情期、间情期和动情后期较低。然而,在发情前期的晚上,垂体中ODC活性出现明显的短暂升高。ODC活性的升高伴随着垂体中多胺腐胺和亚精胺含量的增加。卵巢切除并没有显著改变垂体中基础ODC活性。对去卵巢大鼠进行雌激素处理,会显著刺激垂体多胺生物合成。当雌激素以间隔72小时的两次注射给药时,观察到最大的效应,这使得ODC活性水平与发情前期晚上观察到的水平相当。发情前期前脑垂体中多胺合成的增加似乎与促黄体生成素(LH)或催乳素的排卵前分泌无关,因为促性腺激素释放激素和促甲状腺激素释放激素(可诱导催乳素分泌)均不影响垂体ODC活性。观察到的多胺生物合成可能与发情期前脑垂体中发生的细胞增殖有关。