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睾酮通过上调青春期灵长类动物支持细胞中 FSH 受体的表达和活性来增强 FSH 信号。

Testosterone augments FSH signaling by upregulating the expression and activity of FSH-Receptor in Pubertal Primate Sertoli cells.

机构信息

Cellular Endocrinology Laboratory, National Institute of Immunology, New Delhi, 110067, India; Primate Research Center, National Institute of Immunology, New Delhi, India; Department of Zoology and Biotechnology, HNB Garhwal University, Srinagar Campus, Uttarakhand, India.

Cellular Endocrinology Laboratory, National Institute of Immunology, New Delhi, 110067, India.

出版信息

Mol Cell Endocrinol. 2019 Feb 15;482:70-80. doi: 10.1016/j.mce.2018.12.012. Epub 2018 Dec 21.

Abstract

The synergistic actions of Testosterone (T) and FSH via testicular Sertoli cells (Sc) regulate male fertility. We have previously reported that the actions of these hormones (T and FSH) in infant monkey testes are restricted only to the expansion of Sc and spermatogonial cells. The robust differentiation of male Germ cells (Gc) occurs after pubertal maturation of testis. The present study was aimed to investigate the molecular basis of the synergy between T and FSH action in pubertal primate (Macaca mulatta) Sc. Using primary Sc culture, we here have demonstrated that T (but not FSH) downregulated AMH and Inhibin-β-B (INHBB) mRNAs in pubertal Sc. We also found that, prolonged stimulation of T in pubertal Sc significantly elevated the expression of genes involved in FSH signaling pathway like FSH-Receptor (FSHR), GNAS and RIC8B, and this was associated with a rise in cAMP production. T also augmented FSH induced expression of genes like SCF, GDNF, ABP and Transferrin (TF) in pubertal Sc. We therefore conclude that T acts in synergy with FSH signaling in pubertal Sc. Such a coordinated network of hormonal signaling in Sc may facilitate the timely onset of the first spermatogenic wave in pubertal primates and is responsible for quantitatively and qualitatively normal spermatogenesis.

摘要

睾酮 (T) 和卵泡刺激素 (FSH) 通过睾丸支持细胞 (Sc) 的协同作用调节男性生育能力。我们之前曾报道过,这些激素(T 和 FSH)在婴儿猴睾丸中的作用仅限于 Sc 和精原细胞的扩张。雄性生殖细胞 (Gc) 的强烈分化发生在睾丸青春期成熟之后。本研究旨在探讨 T 和 FSH 作用在青春期灵长类动物(猕猴)Sc 中的协同作用的分子基础。通过原代 Sc 培养,我们在此证明 T(而不是 FSH)下调了青春期 Sc 中的 AMH 和抑制素-β-B (INHBB) mRNA。我们还发现,T 在青春期 Sc 中的长期刺激显著增加了 FSH 信号通路相关基因的表达,如 FSH 受体 (FSHR)、GNAS 和 RIC8B,这与 cAMP 产量的增加有关。T 还增强了 FSH 诱导的 Sc 中基因的表达,如 SCF、GDNF、ABP 和转铁蛋白 (TF)。因此,我们得出结论,T 与青春期 Sc 中的 FSH 信号协同作用。Sc 中这种激素信号的协调网络可能有助于青春期灵长类动物中第一次精子发生波的适时发生,并负责正常精子发生的数量和质量。

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