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小鼠翼状螺旋转录因子Foxl2是颗粒细胞分化和卵巢维持所必需的。

The murine winged-helix transcription factor Foxl2 is required for granulosa cell differentiation and ovary maintenance.

作者信息

Schmidt Dirk, Ovitt Catherine E, Anlag Katrin, Fehsenfeld Sandra, Gredsted Lars, Treier Anna-Corina, Treier Mathias

机构信息

Developmental Biology Programme, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.

出版信息

Development. 2004 Feb;131(4):933-42. doi: 10.1242/dev.00969. Epub 2004 Jan 21.

Abstract

Human Blepharophimosis/ptosis/epicanthus inversus syndrome (BPES) type I is an autosomal dominant disorder associated with premature ovarian failure (POF) caused by mutations in FOXL2, a winged-helix/forkhead domain transcription factor. Although it has been shown that FOXL2 is expressed in adult ovaries, its function during folliculogenesis is not known. Here, we show that the murine Foxl2 gene is essential for granulosa cell differentiation and ovary maintenance. In Foxl2(lacZ) homozygous mutant ovaries granulosa cells do not complete the squamous to cuboidal transition leading to the absence of secondary follicles and oocyte atresia. We further demonstrate that activin-betaA and anti-Mullerian inhibiting hormone expression is absent or strongly diminished in Foxl2(lacZ) homozygous mutant ovaries. Unexpectedly, two weeks after birth most if not all oocytes expressed Gdf9 in Foxl2(lacZ) homozygous mutant ovaries, indicating that nearly all primordial follicles have already initiated folliculogenesis at this stage. This activation, in the absence of functional granulosa cells, leads to oocyte atresia and progressive follicular depletion. In addition to providing a molecular mechanism for premature ovarian failure in BPES, these results suggest that granulosa cell function is not only crucial for oocyte growth but also to maintain follicular quiescence in vivo.

摘要

人类Ⅰ型睑裂狭小/上睑下垂/内眦赘皮综合征(BPES)是一种常染色体显性疾病,与由FOXL2(一种翼状螺旋/叉头结构域转录因子)突变引起的卵巢早衰(POF)相关。尽管已经表明FOXL2在成年卵巢中表达,但其在卵泡发生过程中的功能尚不清楚。在此,我们表明小鼠Foxl2基因对于颗粒细胞分化和卵巢维持至关重要。在Foxl2(lacZ)纯合突变卵巢中,颗粒细胞未完成从扁平状到立方形的转变,导致次级卵泡缺失和卵母细胞闭锁。我们进一步证明,在Foxl2(lacZ)纯合突变卵巢中,激活素-βA和抗苗勒管抑制激素表达缺失或显著减少。出乎意料的是,出生两周后,Foxl2(lacZ)纯合突变卵巢中大多数(如果不是全部)卵母细胞表达Gdf9,表明几乎所有原始卵泡在这个阶段已经开始卵泡发生。在缺乏功能性颗粒细胞的情况下,这种激活导致卵母细胞闭锁和卵泡逐渐耗竭。除了为BPES中的卵巢早衰提供分子机制外,这些结果还表明颗粒细胞功能不仅对卵母细胞生长至关重要,而且对维持体内卵泡静止也至关重要。

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