kisspeptin在雌二醇诱导的抑制素亚基基因表达调节中的潜在作用:来自活体大鼠模型和下丘脑细胞模型的见解。

IF 1.3 4区 医学 Q4 ENDOCRINOLOGY & METABOLISM
Tuvshintugs Tumurbaatar, Haruhiko Kanasaki, Zhuoma Cairang, Batjargal Lkhagvajav, Aki Oride, Hiroe Okada, Satoru Kyo
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引用次数: 0

摘要

下丘脑-垂体-性腺(HPG)轴主要由kisspeptin神经元调节。此外,中枢神经系统中的激活素和抑制素可能有助于HPG轴的调节,因为它们在kisspeptin和促性腺激素释放激素(GnRH)神经元附近表达。我们研究了下丘脑抑制素和激活素在雌二醇(E2)诱导的负反馈机制中的作用。雌性大鼠卵巢切除后下丘脑后部抑制素α亚基基因升高,E2可完全抑制这种升高。相比之下,抑制素βA亚基在卵巢切除术后减少,E2恢复了这种减少。在卵巢完整的大鼠中,E2降低抑制素α亚基并增加抑制素βA在下丘脑中的表达。在rHypoE8和GT1-7下丘脑细胞模型中,E2刺激增加抑制素α亚基基因的表达。激活素和抑制素A增加了GT1-7细胞中Kiss1基因的表达,抑制素B降低了Kiss1基因的表达。Kisspeptin增加抑制素α亚基在rHypoE8细胞、GT1-7细胞和mHypoA55下丘脑KNDy神经元细胞模型中的表达。我们的研究结果提示,E2可增加下丘脑细胞中抑制素亚基的表达,尤其是抑制素α的表达,并且在E2的作用下,kisspeptin、抑制素和激活素相互影响,但它们在体内的调节可能主要由kisspeptin神经元控制。虽然激活素和抑制素对Kiss1基因表达的影响因下丘脑细胞模型而异,但脑内抑制素和激活素可能在kisspeptin神经元影响下e2诱导的负反馈机制中发挥潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential role of kisspeptin in the estradiol-induced modulation of inhibin subunit gene expression: Insights from in vivo rat models and hypothalamic cell models.

The hypothalamic-pituitary-gonadal (HPG) axis is primarily regulated by kisspeptin neurons. In addition, activin and inhibin within the central nervous system might contribute to the regulation of the HPG axis because they are expressed near kisspeptin and gonadotropin-releasing hormone (GnRH) neurons. We investigated the effects of inhibin and activin within the hypothalamus in the estradiol (E2)-induced negative feedback mechanism. Inhibin α subunit gene within the posterior hypothalamus in female rats increased after ovariectomy, and this increase was completely suppressed by E2 supplementation. In contrast, inhibin βA subunit decreased after ovariectomy and this reduction was recovered by E2. In ovary-intact rats, E2 reduced inhibin α subunit and increased inhibin βA expression within the hypothalamus. In the rHypoE8 and GT1-7 hypothalamic cell models, E2 stimulation increased inhibin α subunit gene expression. Activin and inhibin A increased Kiss1 gene expression in GT1-7 cells, while inhibin B reduced it. Kisspeptin increased inhibin α subunit expression in rHypoE8 cells, GT1-7 cells, and the mHypoA55 hypothalamic KNDy neuron cell model. Our findings suggest that the expression of inhibin subunits, especially inhibin α, could be increased by E2 in hypothalamic cells and that kisspeptin, inhibin, and activin mutually influence each other under the actions of E2, but their regulation might be controlled mainly by kisspeptin neurons in vivo. Although the effects of activin and inhibin on Kiss1 gene expression varied depending on the hypothalamic cell model examined, intracerebral inhibin and activin might have potential roles in the E2-induced negative feedback mechanism under the influence of kisspeptin neurons.

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来源期刊
Endocrine journal
Endocrine journal 医学-内分泌学与代谢
CiteScore
4.30
自引率
5.00%
发文量
224
审稿时长
1.5 months
期刊介绍: Endocrine Journal is an open access, peer-reviewed online journal with a long history. This journal publishes peer-reviewed research articles in multifaceted fields of basic, translational and clinical endocrinology. Endocrine Journal provides a chance to exchange your ideas, concepts and scientific observations in any area of recent endocrinology. Manuscripts may be submitted as Original Articles, Notes, Rapid Communications or Review Articles. We have a rapid reviewing and editorial decision system and pay a special attention to our quick, truly scientific and frequently-citable publication. Please go through the link for author guideline.
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