State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou, P. R. China.
Reproduction. 2023 Sep 4;166(4):247-261. doi: 10.1530/REP-23-0034. Print 2023 Oct 1.
The regulatory role of BMP15 on porcine ovarian follicular development still remains unclear. This study reveals that biallelic editing of BMP15 impairs SMAD signaling and inhibits granulosa cell proliferation, resulting in porcine follicular development arrest and ovarian hypoplasia.
Bone morphogenetic protein 15 (BMP15) is a member of the transforming growth factor beta (TGF-β) superfamily, which is critical for facilitating ovarian folliculogenesis in mono-ovulatory mammalian species but is not essential in polyovulatory mice. Our previously established BMP15-edited pigs presented varied female reproductive phenotypes, suggesting the important role of BMP15 in ovarian folliculogenesis in polyovulatory pigs. To understand the regulatory mechanism underlying the effect of BMP15 on porcine ovarian follicular development, we molecularly characterized infertile biallelic-BMP15-edited gilts with ovarian hypoplasia. We found that an absence of BMP15 proteins in biallelic-BMP15-edited gilts can lead to premature activation of primordial follicles, possibly through the upregulation of KITLG-KIT-PI3K-AKT signaling pathways. However, this absence severely impaired SMAD (Sma and Mad proteins from Caenorhabditis elegans and Drosophila, respectively) signaling, causing severely reduced granulosa cell proliferation, leading to the arrest of follicular development during the preantral stage and ovarian hypoplasia, resulting in complete infertility. Our study expands the understanding of the molecular functions of BMP15 in nonrodent polyovulatory mammals.
BMP15 对猪卵巢卵泡发育的调控作用尚不清楚。本研究揭示,BMP15 的双等位基因编辑会损害 SMAD 信号转导并抑制颗粒细胞增殖,导致猪卵泡发育停滞和卵巢发育不良。
骨形态发生蛋白 15(BMP15)是转化生长因子-β(TGF-β)超家族的成员,对于促进单排卵哺乳动物的卵巢卵泡发生至关重要,但在多排卵小鼠中并非必需。我们之前建立的 BMP15 编辑猪表现出不同的雌性生殖表型,这表明 BMP15 在多排卵猪的卵巢卵泡发生中起重要作用。为了了解 BMP15 对猪卵巢卵泡发育的影响的调节机制,我们对具有卵巢发育不良的不育双等位基因-BMP15 编辑小母猪进行了分子表征。我们发现,双等位基因-BMP15 编辑小母猪中 BMP15 蛋白的缺失可能导致原始卵泡过早激活,这可能是通过上调 KITLG-KIT-PI3K-AKT 信号通路实现的。然而,这种缺失严重损害了 SMAD(秀丽隐杆线虫和果蝇中的 Sma 和 Mad 蛋白)信号转导,导致颗粒细胞增殖严重减少,导致卵泡在窦前阶段发育停滞和卵巢发育不良,导致完全不孕。本研究扩展了对非啮齿类多排卵哺乳动物中 BMP15 分子功能的理解。