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小鼠骨形态发生蛋白-15在卵母细胞中的特异性过表达导致转基因小鼠卵泡发生加速和无周期性提前出现。

Oocyte-specific overexpression of mouse bone morphogenetic protein-15 leads to accelerated folliculogenesis and an early onset of acyclicity in transgenic mice.

作者信息

McMahon Heather E, Hashimoto Osamu, Mellon Pamela L, Shimasaki Shunichi

机构信息

Department of Reproductive Medicine, University of California, San Diego, La Jolla, California 92093-0633, USA.

出版信息

Endocrinology. 2008 Jun;149(6):2807-15. doi: 10.1210/en.2007-1550. Epub 2008 Feb 28.

Abstract

Whereas mutations in the bmp15 gene cause infertility in ewes and women due to defects in folliculogenesis, most defects in female mice lacking bone morphogenetic protein (BMP)-15 are confined to the ovulation process, supportive of the observation that functional mouse BMP-15 is barely detected in oocytes in vivo until after the LH surge. In addition, the mouse BMP-15 proprotein is not processed into the functional mature protein in transfected cells. However, a chimeric protein consisting of the human proregion, human cleavage site, and mouse mature region (termed hhmBMP-15) is processed and the mature protein secreted. To study the role of BMP-15 in folliculogenesis, we generated transgenic mice overexpressing hhmBMP-15, exclusively in oocytes during folliculogenesis and confirmed the overexpression of mouse BMP-15 mature protein. Immature transgenic mice exhibited accelerated follicle growth with decreased primary follicles and an increase in secondary follicles. Granulosa cells of immature mice displayed an increased mitotic index and decreased FSH receptor mRNA expression. Adult mice had normal litter sizes but an increased number of atretic antral follicles. Interestingly, aging mice exhibited an early onset of acyclicity marked by increased diestrus length and early occurrence of constant diestrus. These findings indicate the role of BMP-15 in vivo in promoting follicle growth and preventing follicle maturation, resulting in an early decline in the ovarian reserve of transgenic mice. Therefore, the lack of mouse BMP-15 during early folliculogenesis in the wild-type mice may be relevant to their polyovulatory nature as well as the preservation of ovarian function as the mice age.

摘要

虽然bmp15基因的突变会因卵泡发生缺陷导致母羊和女性不孕,但缺乏骨形态发生蛋白(BMP)-15的雌性小鼠的大多数缺陷仅限于排卵过程,这支持了以下观察结果:在体内,直到促黄体生成素激增后,卵母细胞中才几乎检测不到功能性小鼠BMP-15。此外,小鼠BMP-15前体蛋白在转染细胞中不会加工成功能性成熟蛋白。然而,一种由人前区、人切割位点和小鼠成熟区组成的嵌合蛋白(称为hhmBMP-15)会被加工并分泌成熟蛋白。为了研究BMP-15在卵泡发生中的作用,我们构建了在卵泡发生过程中仅在卵母细胞中过表达hhmBMP-15的转基因小鼠,并证实了小鼠BMP-15成熟蛋白的过表达。未成熟的转基因小鼠卵泡生长加速,初级卵泡减少,次级卵泡增加。未成熟小鼠的颗粒细胞有丝分裂指数增加,促卵泡激素受体mRNA表达减少。成年小鼠产仔数正常,但闭锁卵泡数量增加。有趣的是,衰老小鼠出现了早期无发情周期,其特征是动情间期延长和持续动情间期提前出现。这些发现表明BMP-15在体内促进卵泡生长和防止卵泡成熟,导致转基因小鼠卵巢储备早期下降。因此,野生型小鼠在早期卵泡发生过程中缺乏小鼠BMP-15可能与其多排卵特性以及随着小鼠年龄增长卵巢功能的维持有关。

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