Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX 77030, USA.
Biol Reprod. 2013 Apr 4;88(4):86. doi: 10.1095/biolreprod.112.104125. Print 2013 Apr.
Intraovarian factors play important roles in coordinating germ cell and somatic cell growth in the ovary. Prior to the onset of gonadotropin stimulation and reproductive cyclicity, follicle development is dependent upon locally produced growth factors, such as the transforming growth factor beta family members inhibin, activin, and GDF9. In the absence of inhibin in prepubertal mice (Inha(-/-)), there are marked alterations in preantral follicle growth, but no evidence of ovarian tumors characteristic of adult Inha-null mice. To ascertain the contribution of GDF9 to the Inha-null phenotype, we analyzed folliculogenesis in postnatal Inha Gdf9 double knockout mice. Deletion of Gdf9 from Inha(-/-) rescues the initial growth defects found at early follicle stages in Inha(-/-) ovaries, but surprisingly enhances the onset of pretumor lesions. The normalization of growth dynamics between granulosa cells and oocytes of Inha Gdf9 double knockout mice is also accompanied by a reduction in levels of the activin/inhibin beta B subunit, Inhbb, which is upregulated in Inha(-/-) ovaries. However, at later ages, Inha Gdf9 double knockout ovaries are similar to Inha(-/-) ovaries, and show upregulation of the activin/inhibin subunits and downregulation of the growth factor, kit ligand, thus resulting in a local environment that is growth-promoting for granulosa cells but growth-inhibitory for oocytes. These data suggest a sequential mechanism of action initiated by GDF9 in the Inha knockout mouse that promotes defective folliculogenesis. These studies thus provide a novel role for GDF9 in causing reproductive defects and suppressing tumor initiation in the Inha(-/-) mouse model.
卵巢内因素在协调生殖细胞和体细胞生长方面起着重要作用。在促性腺激素刺激和生殖周期性开始之前,卵泡发育依赖于局部产生的生长因子,如转化生长因子β家族成员抑制素、激活素和 GDF9。在未成熟小鼠(Inha(-/-))中缺乏抑制素时,前腔卵泡生长会发生明显改变,但没有成年 Inha 基因缺失型小鼠中特有的卵巢肿瘤证据。为了确定 GDF9 对 Inha 基因缺失型表型的贡献,我们分析了产后 Inha Gdf9 双重敲除小鼠的卵泡发生情况。从 Inha(-/-)中删除 Gdf9 可挽救 Inha(-/-)卵巢中早期卵泡阶段发现的初始生长缺陷,但令人惊讶的是,它增强了肿瘤前病变的发生。Inha Gdf9 双重敲除小鼠中颗粒细胞和卵母细胞生长动力学的正常化也伴随着激活素/抑制素βB 亚基 Inhbb 水平的降低,Inhbb 在 Inha(-/-)卵巢中上调。然而,在较晚的年龄,Inha Gdf9 双重敲除卵巢与 Inha(-/-)卵巢相似,并且表现出激活素/抑制素亚基的上调和生长因子 kit 配体的下调,从而导致有利于颗粒细胞生长但抑制卵母细胞生长的局部环境。这些数据表明,在 Inha 基因缺失型小鼠中,GDF9 启动了一种作用机制,促进了有缺陷的卵泡发生。因此,这些研究为 GDF9 在导致生殖缺陷和抑制 Inha(-/-)小鼠模型中肿瘤起始方面提供了一个新的作用机制。