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下丘脑正中隆起处的酪氨酸羟化酶去磷酸化/失活是吸吮诱导催乳素和促肾上腺皮质激素反应所必需的。

Dephosphorylation/inactivation of tyrosine hydroxylase at the median eminence of the hypothalamus is required for suckling-induced prolactin and adrenocorticotrop hormone responses.

机构信息

Pharmaceutical Technology, Faculty of Pharmacy, University of Debrecen, H-4032 Debrecen, Nagyerdei krt. 98, Hungary.

出版信息

Brain Res Bull. 2010 Apr 29;82(1-2):141-5. doi: 10.1016/j.brainresbull.2010.02.006. Epub 2010 Feb 16.

Abstract

We have recently found that dopamine (DA) released from terminals of the hypothalamic neuroendocrine dopamine (NEDA) neurons plays a role not only in prolactin (PRL), but also in adrenocorticotrop hormone (ACTH) secretion, without having any influence on alpha-melanocyte-stimulating hormone (alpha-MSH) release in lactating dams. The aim of our present studies was to further investigate this DAerg regulation of ACTH using consecutively applied physiological stimulation (suckling) and pharmacological inhibition of the rate-limiting enzyme of DA synthesis (tyrosine hydroxylase, TH) by alpha-methyl-p-tyrosine (alpha-MpT) that acutely affect secretion of these pituitary hormones during lactation. Following 4h separation period, two experimental groups were formed. In the first group, lactating rats were assembled with their litters for 60 min prior to alpha-MpT. In the second group, the alpha-MpT was injected first and 60 min later suckling stimulus was applied. Plasma samples were taken in every 15 min during the 90 min experimental period. Concentrations of plasma PRL, ACTH and alpha-MSH were measured by specific RIAs. Both stimuli applied in the first sequence, significantly elevated plasma PRL and ACTH levels in separated lactating dams, without having any effect on alpha-MSH secretion. Suckling applied in the first sequence was able to block the alpha-MpT-induced elevation of ACTH secretion, while PRL response was also significantly attenuated. alpha-MpT pretreatment prevented both PRL and ACTH responses to suckling stimulus. Investigating the dephosphorylation/inactivation of TH in the arcuate nucleus-ME (TIDA) regions, no pTH-immunoreactive perikarya or terminals can be found in continuously suckled dams. In contrast, after 4h separation of the mothers from their litters, pTH-immunoreactivity can be clearly visualized in the external zone of ME. In alpha-MpT pretreated mothers following 4h separation no pTH positive terminals are visible. No changes in the TH immunostaining can be observed in any of these experimental groups. In conclusion, dephosphorylation/inactivation of TH (the rate-limiting enzyme of the DA biosynthesis) in NEDA neurons is required for suckling-induced PRL and ACTH responses.

摘要

我们最近发现,下丘脑神经内分泌多巴胺(NEDA)神经元末梢释放的多巴胺(DA)不仅在催乳素(PRL)中起作用,而且在促肾上腺皮质激素(ACTH)分泌中起作用,而对哺乳期母鼠的α-黑色素细胞刺激激素(α-MSH)释放没有任何影响。我们目前研究的目的是进一步研究这种 DAerg 对 ACTH 的调节作用,方法是使用连续应用生理刺激(吸吮)和药理学抑制多巴胺合成的限速酶(酪氨酸羟化酶,TH)来急性影响这些垂体激素在哺乳期的分泌。经过 4 小时的分离期,形成了两个实验组。在第一组中,在给α-MpT 之前,将哺乳期大鼠与它们的幼崽组装在一起 60 分钟。在第二组中,首先注射α-MpT,然后 60 分钟后应用吸吮刺激。在 90 分钟的实验期间,每隔 15 分钟采集一次血浆样本。通过特异性 RIA 测量血浆 PRL、ACTH 和 α-MSH 的浓度。在分离的哺乳期母鼠中,两种刺激物按第一种顺序应用,显著升高了血浆 PRL 和 ACTH 水平,而对 α-MSH 分泌没有任何影响。在第一种顺序中应用的吸吮刺激能够阻断α-MpT 诱导的 ACTH 分泌升高,同时 PRL 反应也明显减弱。α-MpT 预处理可防止吸吮刺激对 PRL 和 ACTH 反应。在弓状核-ME(TIDA)区域研究 TH 的去磷酸化/失活,在持续吸吮的母鼠中找不到 pTH-免疫反应性神经元或末梢。相反,在母亲与幼崽分离 4 小时后,可以在 ME 的外部区域清楚地看到 pTH-免疫反应性。在 4 小时分离后用α-MpT 预处理的母亲中,没有可见的 pTH 阳性末梢。在这些实验组中,TH 免疫染色没有任何变化。总之,NEDA 神经元中 TH(多巴胺生物合成的限速酶)的去磷酸化/失活是吸吮诱导的 PRL 和 ACTH 反应所必需的。

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