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磷脂酰肌醇代谢的抑制:多巴胺抑制催乳素分泌作用的一种可能的受体后机制。

The inhibition of phosphatidylinositol turnover: a possible postreceptor mechanism for the prolactin secretion-inhibiting effect of dopamine.

作者信息

Canonico P L, Valdenegro C A, MacLeod R M

出版信息

Endocrinology. 1983 Jul;113(1):7-14. doi: 10.1210/endo-113-1-7.

Abstract

We studied the association between the inhibition of phosphatidylinositol (PI) turnover and the inhibition of PRL secretion in the presence of dopamine. The incorporation of radiolabeled phosphate into anterior pituitary gland PI as well as serum PRL levels were significantly (P less than 0.01) greater in female than in male rats. No significant sex-related difference was found in the incorporation by pituitary tissue of 32P into phosphatidylcholine (PC) or phosphatidylethanolamine (PE). Dopamine decreased the incorporation of 32P into PI, but not into PC or PE, by female rat pituitary glands; this effect was reversed by two dopamine receptor-blocking agents, haloperidol and pimozide. After dopamine was removed from the incubation medium, basal 32P incorporation into PI was restored within 10 min. The administration of bromocriptine (500 micrograms/kg, ip, 4 h earlier) significantly reduced pituitary PI turnover. Conversely, in vivo injection of alpha-methyl-p-tyrosine (alpha MpT; 200 mg, ip, 2.5 h before death), an inhibitor of catecholamine biosynthesis, dramatically increased serum PRL levels. In vitro incorporation of 32P into PI, but not into PC or PE, increased (+130%) when these glands were incubated for 30 min with radiolabeled phosphate. The in vitro addition of 0.5 microM dopamine to glands from alpha MpT-treated rats counteracted the stimulation of 32P incorporation into PI produced by alph MpT treatment. In rats bearing the transplantable PRL-secreting tumor MtTW15, the hyperprolactinemia produced by the tumor stimulates hypothalamic turnover of dopamine, with a consequent inhibition of pituitary gland PRL secretion. 32P incorporation into PI, but not into PC or PE, was significantly (P less than 0.01) inhibited (-41%) in pituitary glands from these rats. The injection of alpha MpT (200 mg/kg, ip) or haloperidol (2 mg/kg, ip) 12 and 3 h before death into MtTW15 tumor-bearing rats abolished the inhibition of 32P incorporation into pituitary PI. Dopamine also decreased PI turnover in the 7315a PRL-secreting pituitary tumor. Our data indicate that the PI cycle may be an intracellular mechanism controlling PRL release in the rat and that the changes in its cleavage and turnover may be an early postreceptor event responsible for the inhibition of PRL secretion produced by factors such as dopamine.

摘要

我们研究了在多巴胺存在的情况下,磷脂酰肌醇(PI)周转的抑制与催乳素(PRL)分泌抑制之间的关联。雌性大鼠垂体前叶PI中放射性标记磷酸盐的掺入量以及血清PRL水平显著(P<0.01)高于雄性大鼠。垂体组织将32P掺入磷脂酰胆碱(PC)或磷脂酰乙醇胺(PE)的情况未发现明显的性别相关差异。多巴胺可降低雌性大鼠垂体前叶将32P掺入PI的量,但不影响其掺入PC或PE的量;两种多巴胺受体阻断剂氟哌啶醇和匹莫齐特可逆转这种作用。从孵育培养基中去除多巴胺后,基础状态下PI中32P的掺入在10分钟内恢复。预先4小时腹腔注射溴隐亭(500微克/千克)可显著降低垂体PI的周转。相反,在处死前2.5小时腹腔注射儿茶酚胺生物合成抑制剂α-甲基对酪氨酸(α-MpT;200毫克)可显著提高血清PRL水平。当这些腺体与放射性标记磷酸盐孵育30分钟时,PI中32P的体外掺入量增加(+130%),而PC或PE中则未增加。给α-MpT处理的大鼠腺体体外添加0.5微摩尔多巴胺可抵消α-MpT处理对PI中32P掺入的刺激作用。在携带可移植性PRL分泌肿瘤MtTW15的大鼠中,肿瘤产生的高催乳素血症刺激下丘脑多巴胺周转,从而抑制垂体PRL分泌。这些大鼠垂体中PI中32P的掺入量显著(P<0.01)受到抑制(-41%),而PC或PE中则未受影响。在处死前12小时和3小时给携带MtTW15肿瘤的大鼠腹腔注射α-MpT(200毫克/千克)或氟哌啶醇(2毫克/千克)可消除对垂体PI中32P掺入的抑制作用。多巴胺也可降低7315a PRL分泌性垂体肿瘤中的PI周转。我们的数据表明,PI循环可能是大鼠体内控制PRL释放的一种细胞内机制,其裂解和周转的变化可能是一种早期的受体后事件,负责由多巴胺等因素引起的PRL分泌抑制。

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