Nóbrega Rafael Henrique, Morais Roberto Daltro Vidal de Souza, Crespo Diego, de Waal Paul P, de França Luiz Renato, Schulz Rüdiger W, Bogerd Jan
Department of Morphology (R.H.N.), Institute of Bioscience, São Paulo State University, 18618-970 Botucatu, Brazil; Reproductive Biology Group (R.H.N., R.D.V.d.S.M., D.C., P.P.d.W., R.W.S., J.B.), Division of Developmental Biology, Department of Biology, Faculty of Science, Utrecht University, 3584 CH Utrecht, The Netherlands; and Laboratory of Cellular Biology (L.R.d.F.), Department of Morphology, Institute of Biological Sciences, Federal University of Minas Gerais, 31270-901 Belo Horizonte, Brazil.
Endocrinology. 2015 Oct;156(10):3804-17. doi: 10.1210/en.2015-1157. Epub 2015 Jul 24.
Growth factors modulate germ line stem cell self-renewal and differentiation behavior. We investigate the effects of Igf3, a fish-specific member of the igf family. Fsh increased in a steroid-independent manner the number and mitotic index of single type A undifferentiated spermatogonia and of clones of type A differentiating spermatogonia in adult zebrafish testis. All 4 igf gene family members in zebrafish are expressed in the testis but in tissue culture only igf3 transcript levels increased in response to recombinant zebrafish Fsh. This occurred in a cAMP/protein kinase A-dependent manner, in line with the results of studies on the igf3 gene promoter. Igf3 protein was detected in Sertoli cells. Recombinant zebrafish Igf3 increased the mitotic index of type A undifferentiated and type A differentiating spermatogonia and up-regulated the expression of genes related to spermatogonial differentiation and entry into meiosis, but Igf3 did not modulate testicular androgen release. An Igf receptor inhibitor blocked these effects of Igf3. Importantly, the Igf receptor inhibitor also blocked Fsh-induced spermatogonial proliferation. We conclude that Fsh stimulated Sertoli cell production of Igf3, which promoted via Igf receptor signaling spermatogonial proliferation and differentiation and their entry into meiosis. Because previous work showed that Fsh also released spermatogonia from an inhibitory signal by down-regulating anti-Müllerian hormone and by stimulating androgen production, we can now present a model, in which Fsh orchestrates the activity of stimulatory (Igf3, androgens) and inhibitory (anti-Müllerian hormone) signals to promote spermatogenesis.
生长因子可调节生殖系干细胞的自我更新和分化行为。我们研究了胰岛素样生长因子3(Igf3)的作用,它是胰岛素样生长因子(igf)家族中鱼类特有的成员。在成年斑马鱼睾丸中,促卵泡激素(Fsh)以一种不依赖类固醇的方式增加了单一未分化A型精原细胞以及分化型A型精原细胞克隆的数量和有丝分裂指数。斑马鱼的所有4个igf基因家族成员在睾丸中均有表达,但在组织培养中,只有igf3的转录水平会因重组斑马鱼Fsh而升高。这一过程以环磷酸腺苷/蛋白激酶A依赖性方式发生,与对igf3基因启动子的研究结果一致。在支持细胞中检测到了Igf3蛋白。重组斑马鱼Igf3增加了未分化A型和分化型A型精原细胞的有丝分裂指数,并上调了与精原细胞分化和进入减数分裂相关基因的表达,但Igf3并未调节睾丸雄激素的释放。一种Igf受体抑制剂阻断了Igf3的这些作用。重要的是,Igf受体抑制剂也阻断了Fsh诱导的精原细胞增殖。我们得出结论,Fsh刺激支持细胞产生Igf3,Igf3通过Igf受体信号传导促进精原细胞增殖、分化及其进入减数分裂。因为先前的研究表明,Fsh还通过下调抗苗勒管激素和刺激雄激素产生,使精原细胞从抑制信号中释放出来,所以我们现在可以提出一个模型,即Fsh协调刺激信号(Igf3、雄激素)和抑制信号(抗苗勒管激素)的活性以促进精子发生。