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首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >In vitro secretion of gonadotropin-releasing hormone (GnRH) and (hydroxyproline9)GnRH from the rat hypothalamus exhibits a differential sensitivity to castration and second messengers.
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In vitro secretion of gonadotropin-releasing hormone (GnRH) and (hydroxyproline9)GnRH from the rat hypothalamus exhibits a differential sensitivity to castration and second messengers.

机译:大鼠下丘脑的促性腺激素释放激素(GnRH)和(hydroxyproline9)GnRH的体外分泌表现出对去势和第二信使的敏感性不同。

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The decapeptide [hydroxyproline9]GnRH (HypGnRH) has been characterized as an endogenous posttranslational product of the gonadotropin-releasing hormone (GnRH) precursor in a wide range of mammalian brains. Despite consistent biological effects, its secretion by the hypothalamus remains hypothetical. We report here in vitro secretion of HypGnRH and GnRH by the hypothalamus from intact and castrated male rats and provide evidence that they are differentially regulated. Both peptides were identified by two anti-GnRH antibodies of different specificities after separation under two high-performance liquid chromatography conditions. Calcium dependency of HypGnRH release was demonstrated under stimulation with KCl in the absence or presence of Ca2+, as well as with Bay K 8644, veratridine, methoxyverapamil, or tetrodotoxin. Activation of signaling pathways involving adenylate cyclase and protein kinases A and C (PKC) induced HypGnRH release. Expression of data as percentage of release over tissue stores revealed a two- to threefold higher release of HypGnRH than of GnRH under the different modes of stimulation used, except under PKC activation which triggered a comparable recruitment of both peptides. Castration selectively affected PKC-coupled GnRH secretion which showed a twofold lesser release than in intact rats, while the HypGnRH release was unaffected. We conclude that HypGnRH and GnRH are not secreted from the hypothalamus according to the same mechanisms.
机译:十肽[hydroxyproline9] GnRH(HypGnRH)的特征是促性腺激素释放激素(GnRH)前体在多种哺乳动物脑中的内源性翻译后产物。尽管有一致的生物学作用,但下丘脑分泌的分泌仍然是假设的。我们在这里报告完整和去势的雄性大鼠下丘脑的HypGnRH和GnRH的体外分泌,并提供它们受到差异调节的证据。在两种高效液相色谱条件下分离后,通过两种具有不同特异性的抗GnRH抗体鉴定了这两种肽。在不存在或存在Ca2 +的情况下,用KCl刺激,以及用Bay K 8644,藜芦定,甲氧基维拉帕米或河豚毒素刺激,证实了HypGnRH释放的钙依赖性。涉及腺苷酸环化酶和蛋白激酶A和C(PKC)的信号传导途径的激活诱导HypGnRH释放。数据表示为在组织存储上的释放百分比,表明在所使用的不同刺激模式下,HypGnRH的释放比GnRH高2到3倍,但在PKC激活下会触发这两种肽的可募集。去势选择性地影响PKC-偶联的GnRH分泌,与完整大鼠相比,PKC偶联的GnRH释放少两倍,而HypGnRH释放则不受影响。我们得出结论,根据相同的机制,下丘脑不分泌HypGnRH和GnRH。

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