Mak Winifred, Fang Caodi, Holden Tobias, Dratver Milana Bockhur, Lin Haifan
Yale Stem Cell Center, Yale University School of Medicine, New Haven, Connecticut Division of Reproductive Endocrinology and Infertility, Department of Obstetrics, Gynecology, and Reproductive Sciences, Yale University School of Medicine, New Haven, Connecticut
Yale Stem Cell Center, Yale University School of Medicine, New Haven, Connecticut Division of Reproductive Endocrinology and Infertility, Department of Obstetrics, Gynecology, and Reproductive Sciences, Yale University School of Medicine, New Haven, Connecticut.
Biol Reprod. 2016 Jun;94(6):134. doi: 10.1095/biolreprod.115.137497. Epub 2016 May 11.
Pumilio/FBF (PUF) proteins are a highly conserved family of translational regulators. The Drosophila PUF protein, Pumilio, is crucial for germline establishment and fertility. In mammals, primordial folliculogenesis is a key process that establishes the initial cohort of female mammalian germ cells prior to birth, and this primordial follicle pool is a prerequisite for female reproductive competence. We sought to understand whether PUF proteins have a conserved role in mammals during primordial folliculogenesis and female reproductive competency. In mammals, two homologs of Pumilio exist: Pumilio 1 (Pum1) and Pum2. Here, we report that PUMILIO (PUM) 1 plays an important role in the establishment of the primordial follicle pool, meiosis, and female reproductive competency, whereas PUM2 does not have a detectable function in these processes. Furthermore, we show that PUM1 facilitates the transition of the late meiotic prophase I oocyte from pachytene to diplotene stage by regulating SYCP1 protein. Our study reveals an important role of translational regulation in mammalian female germ cell development.
Pumilio/FBF(PUF)蛋白是一类高度保守的翻译调节因子家族。果蝇的PUF蛋白Pumilio对于生殖系的建立和生育能力至关重要。在哺乳动物中,原始卵泡发生是一个关键过程,它在出生前建立了雌性哺乳动物生殖细胞的初始群体,而这个原始卵泡库是雌性生殖能力的先决条件。我们试图了解PUF蛋白在哺乳动物原始卵泡发生和雌性生殖能力过程中是否具有保守作用。在哺乳动物中,存在Pumilio的两个同源物:Pumilio 1(Pum1)和Pum2。在此,我们报告PUMILIO(PUM)1在原始卵泡库的建立、减数分裂和雌性生殖能力方面发挥重要作用,而PUM2在这些过程中没有可检测到的功能。此外,我们表明PUM1通过调节SYCP1蛋白促进减数分裂前期I晚期卵母细胞从粗线期向双线期的转变。我们的研究揭示了翻译调控在哺乳动物雌性生殖细胞发育中的重要作用。