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小鼠中转录调节因子 TAF4B 缺失导致的卵巢衰老加速。

Accelerated ovarian aging in the absence of the transcription regulator TAF4B in mice.

机构信息

Department of Molecular and Cell Biology and Biochemistry, Brown University, Providence, Rhode Island 02903, USA.

出版信息

Biol Reprod. 2010 Jan;82(1):23-34. doi: 10.1095/biolreprod.109.077495. Epub 2009 Aug 14.

Abstract

The mammalian ovary is unique in that its reproductive life span is limited by oocyte quantity and quality. Oocytes are recruited from a finite pool of primordial follicles that are usually exhausted from the ovary during midadult life. If regulation of this pool is perturbed, the reproductive capacity of the ovary is compromised. TAF4B is a gonad-enriched subunit of the TFIID complex required for female fertility in mice. Previous characterization of TAF4B-deficient ovaries revealed several reproductive deficits that collectively result in infertility. However, the etiology of such fertility defects remains unknown. By assaying estrous cycle, ovarian pathology, and gene expression changes in young Taf4b-null female mice, we show that TAF4B-deficient female mice exhibit premature reproductive senescence. The rapid decline of ovarian function in Taf4b-null mice begins in early postnatal life, and follicle depletion is completed by 16 wk of age. To uncover differences in gene expression that may underlie accelerated ovarian aging, we compared genome-wide expression profiles of 3-wk-old, prepubescent Taf4b-null and wild-type ovaries. At 3 wk of age, decreased gene expression in Taf4b-null ovaries is similar to that seen in aged ovaries, revealing several molecular signatures of premature reproductive senescence, including reduced Smc1b. One significantly reduced transcript in the young TAF4B-null ovary codes for MOV10L1, a putative germline-specific RNA helicase that is related to the Drosophila RNA interference protein, armitage. We show here that Mov10l1 is expressed in mouse oocytes and that its expression is sensitive to TAF4B level, linking TAF4B to the posttranscriptional control of ovarian gene expression.

摘要

哺乳动物的卵巢是独特的,因为它的生殖寿命受到卵母细胞数量和质量的限制。卵母细胞是从有限的原始卵泡池中招募而来的,这些卵泡通常在成年中期就从卵巢中耗尽。如果这个卵泡池的调节受到干扰,卵巢的生殖能力就会受到损害。TAF4B 是 TFIID 复合物中富含性腺的亚基,是小鼠雌性生育力所必需的。先前对 TAF4B 缺陷卵巢的特征描述显示,几个生殖缺陷共同导致了不育。然而,这种生育缺陷的病因仍然未知。通过检测发情周期、卵巢病理和年轻 Taf4b 缺失雌性小鼠的基因表达变化,我们表明 TAF4B 缺失的雌性小鼠表现出过早的生殖衰老。Taf4b 缺失小鼠的卵巢功能迅速下降始于出生后早期,并且卵泡耗竭在 16 周龄时完成。为了揭示可能导致卵巢加速衰老的基因表达差异,我们比较了 3 周龄、青春期前的 Taf4b 缺失和野生型卵巢的全基因组表达谱。在 3 周龄时,Taf4b 缺失卵巢中的基因表达减少与老年卵巢中的相似,揭示了几个过早生殖衰老的分子特征,包括 Smc1b 减少。在年轻的 TAF4B 缺失卵巢中显著减少的一个转录本编码 MOV10L1,这是一种假定的生殖细胞特异性 RNA 解旋酶,与果蝇 RNA 干扰蛋白 armitage 有关。我们在这里表明,Mov10l1 在小鼠卵母细胞中表达,其表达对 TAF4B 水平敏感,将 TAF4B 与卵巢基因表达的转录后调控联系起来。

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