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骨形态发生蛋白2促进卵巢中原始卵泡的形成。

Bone morphogenetic protein 2 promotes primordial follicle formation in the ovary.

作者信息

Chakraborty Prabuddha, Roy Shyamal K

机构信息

Department of Cellular and Integrative Physiology, and Obstetrics and Gynecology.

1] Department of Cellular and Integrative Physiology, and Obstetrics and Gynecology [2] University of Nebraska Medical Center, Omaha, NE.

出版信息

Sci Rep. 2015 Jul 29;5:12664. doi: 10.1038/srep12664.

Abstract

Primordial follicles (PF) are formed when somatic cells differentiate into flattened pregranulosa cells, invaginate into the oocyte nests and encircle individual oocytes. We hypothesize that BMP2 regulates PF formation by promoting the transition of germ cells into oocytes and somatic cells into pregranulosa cells. E15 hamster ovaries were cultured for 8 days corresponding to postnatal day 8 (P8) in vivo, with or without BMP2, and the formation of PF was examined. BMP2 was expressed in the oocytes as well as ovarian somatic cells during development. BMP2 exposure for the first two days or the last two days or the entire 8 days of culture led to increase in PF formation suggesting that BMP2 affected both germ cell transition and somatic cell differentiation. Whereas an ALK2/3 inhibitor completely blocked BMP2-induced PF formation, an ALK2-specific inhibitor was partially effective, suggesting that BMP2 affected PF formation via both ALK2 and ALK3. BMP2 also reduced apoptosis in vitro. Further, more meiotic oocytes were present in BMP2 exposed ovaries. In summary, the results provide the first evidence that BMP2 regulates primordial follicle formation by promoting germ cell to oocyte transition and somatic cell to pre-granulosa cells formation and it acts via both ALK2 and ALK3.

摘要

原始卵泡(PF)是在体细胞分化为扁平的前颗粒细胞,向内陷入卵母细胞巢并包围单个卵母细胞时形成的。我们假设骨形态发生蛋白2(BMP2)通过促进生殖细胞向卵母细胞的转变以及体细胞向前颗粒细胞的转变来调节原始卵泡的形成。将E15仓鼠卵巢在体内培养8天,相当于出生后第8天(P8),分别添加或不添加BMP2,然后检查原始卵泡的形成情况。在发育过程中,BMP2在卵母细胞以及卵巢体细胞中均有表达。在培养的前两天、后两天或整个8天暴露于BMP2均导致原始卵泡形成增加,这表明BMP2影响生殖细胞转变和体细胞分化。而一种ALK2/3抑制剂完全阻断了BMP2诱导的原始卵泡形成,一种ALK2特异性抑制剂则部分有效,这表明BMP2通过ALK2和ALK3影响原始卵泡的形成。BMP2在体外也减少了细胞凋亡。此外,暴露于BMP2的卵巢中存在更多处于减数分裂期的卵母细胞。总之,这些结果首次证明BMP2通过促进生殖细胞向卵母细胞的转变以及体细胞向前颗粒细胞的形成来调节原始卵泡的形成,并且它通过ALK2和ALK3发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ab3/4518238/d22c08315575/srep12664-f1.jpg

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