Ren Yi, Cowan Robert G, Harman Rebecca M, Quirk Susan M
Department of Animal Science, Cornell University, Ithaca, NY 14853, USA.
Mol Endocrinol. 2009 May;23(5):711-23. doi: 10.1210/me.2008-0391. Epub 2009 Feb 5.
The role of the hedgehog (HH) signaling pathway in ovarian function was examined in transgenic mice in which expression of a dominant active allele of the signal transducer smoothened (SmoM2) was directed to the ovary and Müllerian duct by cre-mediated recombination (Amhr2(cre/+)SmoM2). Mutant mice were infertile and had ovarian and reproductive tract defects. Ovaries contained follicles of all sizes and corpora lutea (CL), but oocytes were rarely recovered from the oviducts of superovulated mice and remained trapped in preovulatory follicles. Measures of luteinization did not differ. Cumulus expansion appeared disorganized, and in vitro analyses confirmed a reduced expansion index. Microarray analysis indicated that expression levels of genes typical of smooth muscle were reduced in mutant mice, and RT-PCR showed that levels of expression of muscle genes were reduced in the nongranulosa, theca-interstitial cell-enriched fraction. Whereas a layer of cells in the outer theca was positively stained for smooth muscle actin in control ovaries, this staining was reduced or absent in mutant ovaries. Expression of a number of genes in granulosa cells that are known to be important for ovulation did not differ in mutants and controls. Expression of components of the HH pathway was observed in both granulosa cells and in the nongranulosa, residual ovarian tissue and changed in response to treatment with equine chorionic gonadotropin/human gonadotropin. The results show that appropriate signaling through the HH pathway is required for development of muscle cells within the theca and that impaired muscle development is associated with failure to release the oocyte at ovulation.
通过cre介导的重组(Amhr2(cre/+)SmoM2),将信号转导分子平滑受体(SmoM2)的显性活性等位基因的表达定向到卵巢和苗勒管,以此在转基因小鼠中研究刺猬信号通路(HH)在卵巢功能中的作用。突变小鼠不育,且存在卵巢和生殖道缺陷。卵巢中有各种大小的卵泡和黄体(CL),但在超排卵小鼠的输卵管中很少能回收卵母细胞,卵母细胞仍被困在排卵前卵泡中。黄体化指标没有差异。卵丘扩展似乎紊乱,体外分析证实扩展指数降低。微阵列分析表明,突变小鼠中平滑肌典型基因的表达水平降低,逆转录聚合酶链反应显示,在非颗粒细胞、富含卵泡膜间质细胞的部分中,肌肉基因的表达水平降低。在对照卵巢中,卵泡膜外层的一层细胞平滑肌肌动蛋白呈阳性染色,而在突变卵巢中,这种染色减少或缺失。已知对排卵很重要的颗粒细胞中一些基因的表达在突变体和对照中没有差异。在颗粒细胞以及非颗粒细胞、残留卵巢组织中均观察到HH通路成分的表达,并且其表达会因马绒毛膜促性腺激素/人促性腺激素处理而发生变化。结果表明,通过HH通路进行适当的信号传导是卵泡膜内肌肉细胞发育所必需的,肌肉发育受损与排卵时未能释放卵母细胞有关。