首页> 美国卫生研究院文献>other >Tuberal hypothalamic expression of the glial intermediate filaments glial fibrillary acidic protein and vimentin across the turkey hen (Meleagris gallopavo) reproductive cycle: further evidence for a role of glial structural plasticity in seasonal reproduction
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Tuberal hypothalamic expression of the glial intermediate filaments glial fibrillary acidic protein and vimentin across the turkey hen (Meleagris gallopavo) reproductive cycle: further evidence for a role of glial structural plasticity in seasonal reproduction

机译:在整个火鸡母鸡(Meleagris gallopavo)生殖周期中神经胶质中间丝神经胶质原纤维酸性蛋白和波形蛋白的下丘脑表达:进一步证明神经胶质结构可塑性在季节性繁殖中的作用

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摘要

Glia regulate the hypothalamic-pituitary-gonadal (HPG) axis in birds and mammals. This is accomplished mechanically by ensheathing gonadotrophin-releasing hormone I (GnRH) nerve terminals thereby blocking access to the pituitary blood supply, or chemically in a paracrine manner. Such regulation requires appropriate spatial associations between glia and nerve terminals. Female turkeys (Meleagris gallavapo) use day length as a primary breeding cue. Long days activate the HPG-axis until the hen enters a photorefractory state when previously stimulatory day lengths no longer support HPG-axis activity. Hens must then be exposed to short days before reactivation of the reproductive axis occurs. As adult hens have discrete inactive reproductive states in addition to a fertile state, they are useful for examining the glial contribution to reproductive function. We immunostained tuberal hypothalami from short and long-day photosensitive hens, plus long-day photorefractory hens to examine expression of two intermediate filaments that affect glial morphology: glial fibrillary acidic protein (GFAP) and vimentin. GFAP expression was drastically reduced in the central median eminence of long day photosensitive hens, especially within the internal zone. Vimentin expression was similar among groups. However, vimentin-immunoreactive fibers abutting the portal vasculature were significantly negatively correlated with GFAP expression in the median eminence, which is consistent with our hypothesis for a reciprocal relationship between GFAP and vimentin expression. It appears that up-regulation of GFAP expression in the central median eminence of turkey hens is associated with periods of reproductive quiescence and that photofractoriness is associated with the lack of a glial cytoskeletal response to long days.
机译:胶质细胞调节鸟类和哺乳动物的下丘脑-垂体-性腺(HPG)轴。通过鞘内释放促性腺激素释放激素I(GnRH)的神经末梢来机械地完成此操作,从而阻止垂体血液供应的获取,或者以旁分泌的方式化学完成。这种调节需要神经胶质和神经末梢之间适当的空间联系。雌性火鸡(Meleagris gallavapo)将日长作为主要繁殖线索。当以前的刺激日长不再支持HPG轴活动时,漫长的日子会激活HPG轴直到母鸡进入光敏状态。在重新激活生殖轴之前,母鸡必须暴露在短时间内。由于成年母鸡除了具有生育能力外,还具有离散的非活动生殖状态,因此它们对于检查神经胶质对生殖功能的作用非常有用。我们对短时和长日光敏母鸡以及长日光敏鸡进行了免疫性染色,以检查两条影响神经胶质形态的中间丝的表达:神经胶质纤维酸性蛋白(GFAP)和波形蛋白。在长日光敏母鸡的中央中位突出处,尤其是在内部区域,GFAP表达急剧降低。组间波形蛋白的表达相似。然而,在门静脉中段,邻接门脉脉管的波形蛋白免疫反应性纤维与GFAP表达显着负相关,这与我们关于GFAP和波形蛋白表达之间相互关系的假设是一致的。看来,火鸡母鸡中央正中突出中GFAP表达的上调与生殖静止期有关,而光致断裂与缺乏对长日龄的神经胶质细胞骨架反应有关。

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