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睾丸中阿片促黑皮质素源肽的鉴定及其可能的功能

Identification and possible function of pro-opiomelanocortin-derived peptides in the testis.

作者信息

Bardin C W, Shaha C, Mather J, Salomon Y, Margioris A N, Liotta A S, Gerendai I, Chen C L, Krieger D T

出版信息

Ann N Y Acad Sci. 1984;438:346-64. doi: 10.1111/j.1749-6632.1984.tb38296.x.

Abstract

Using antibodies against peptides derived from different portions of the POMC molecule, immunocytochemical evidence suggests that this precursor and/or the peptides present within it are localized in testicular Leydig cells of at least five species. There is no evidence for the localization of these peptides or their precursor in any other cell type in this organ. Examination of testicular extracts by gel filtration, SDS-PAGE, and RP-HPLC indicate that the testis contains low concentrations of POMC-derived peptides relative to brain. Further analysis indicates that POMC is processed to alpha-MSH and beta-endorphin similar to its processing in intermediate pituitary lobe and brain. The relative mobilities of immunoreactive alpha-MSH and beta-endorphin on RP-HPLC columns indicate that they are in the unacetylated state as in brain and in contrast to the acetylated forms in the intermediate pituitary lobe. The potential for Leydig cells to synthesize POMC and its peptides was suggested by the demonstration of POMC-like mRNA in total testis and Leydig cell cultures. The size of the POMC-like mRNA is approximately 150 base pairs shorter than anterior or intermediate pituitary POMC mRNA. POMC-like mRNA activity has also been localized to Leydig cells in sections of testes using in situ hybridization. Immunostainable beta-endorphin and other POMC-derived peptides are present in testicular Leydig cells during fetal life and following puberty at times when testosterone secretion is maximal. The accumulation of immunostainable POMC-derived peptides in Leydig cells is dramatically increased by LH and hCG. A variety of observations suggests that testicular cells can respond to POMC-derived peptides. ACTH and the MSHs stimulate growth and cAMP accumulation in Sertoli cells. By contrast, studies using antagonists suggested that beta-endorphin and/or another testicular opioid inhibit Sertoli cell proliferation and ABP secretion. These observations are consistent with the postulate that different portions of the POMC molecule may have opposite effects on Sertoli cell function and suggest a mechanism by which Leydig cells could modulate Sertoli cell activity. Intratesticular administration of opiate antagonists inhibits testosterone secretion both in vivo and in vitro. These observations suggest that Leydig cell-derived beta-endorphin may facilitate testosterone secretion either directly or indirectly. The finding of POMC and its derivative peptides in testis, ovary, adrenal, and placenta suggests that all steroid hormone-secreting organs in mammals may utilize this peptidergic system.

摘要

利用针对源自促肾上腺皮质激素原(POMC)分子不同部分的肽段的抗体,免疫细胞化学证据表明,这种前体和/或其中存在的肽段定位于至少五个物种的睾丸间质细胞中。没有证据表明这些肽段或其前体在该器官的任何其他细胞类型中定位。通过凝胶过滤、SDS - PAGE和反相高效液相色谱(RP - HPLC)对睾丸提取物进行检测表明,相对于脑,睾丸中促肾上腺皮质激素原衍生肽段的浓度较低。进一步分析表明,促肾上腺皮质激素原被加工成α - 促黑素(α - MSH)和β - 内啡肽,这与其在垂体中间叶和脑中的加工过程相似。免疫反应性α - MSH和β - 内啡肽在RP - HPLC柱上的相对迁移率表明,它们与脑中一样处于未乙酰化状态,与垂体中间叶中的乙酰化形式相反。睾丸总组织和间质细胞培养物中促肾上腺皮质激素原样mRNA的证实表明间质细胞具有合成促肾上腺皮质激素原及其肽段的潜力。促肾上腺皮质激素原样mRNA的大小比垂体前叶或中间叶的促肾上腺皮质激素原mRNA短约150个碱基对。使用原位杂交技术也已将促肾上腺皮质激素原样mRNA活性定位于睾丸切片中的间质细胞。在胎儿期以及青春期后睾酮分泌最高时,睾丸间质细胞中存在可免疫染色的β - 内啡肽和其他促肾上腺皮质激素原衍生肽段。促黄体生成素(LH)和人绒毛膜促性腺激素(hCG)可显著增加间质细胞中可免疫染色的促肾上腺皮质激素原衍生肽段的积累。各种观察结果表明,睾丸细胞能够对促肾上腺皮质激素原衍生肽段作出反应。促肾上腺皮质激素(ACTH)和促黑素可刺激支持细胞的生长和环磷酸腺苷(cAMP)积累。相比之下,使用拮抗剂的研究表明,β - 内啡肽和/或另一种睾丸阿片样物质可抑制支持细胞增殖和雄激素结合蛋白(ABP)分泌。这些观察结果与促肾上腺皮质激素原分子不同部分可能对支持细胞功能产生相反作用的假设一致,并提示了一种间质细胞调节支持细胞活性的机制。睾丸内给予阿片样物质拮抗剂在体内和体外均可抑制睾酮分泌。这些观察结果表明,间质细胞衍生的β - 内啡肽可能直接或间接促进睾酮分泌。在睾丸、卵巢、肾上腺和胎盘中发现促肾上腺皮质激素原及其衍生肽段表明,哺乳动物中所有分泌类固醇激素的器官可能都利用了这种肽能系统。

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