Laboratory of Cellular and Developmental Biology, NIDDK, National Institutes of Health, Bethesda, MD 20892, USA.
Nucleic Acids Res. 2020 Apr 17;48(7):3525-3541. doi: 10.1093/nar/gkaa101.
Germ-cell transcription factors control gene networks that regulate oocyte differentiation and primordial follicle formation during early, postnatal mouse oogenesis. Taking advantage of gene-edited mice lacking transcription factors expressed in female germ cells, we analyzed global gene expression profiles in perinatal ovaries from wildtype, FiglaNull, Lhx8Null and Sohlh1Null mice. Figla deficiency dysregulates expression of meiosis-related genes (e.g. Sycp3, Rad51, Ybx2) and a variety of genes (e.g. Nobox, Lhx8, Taf4b, Sohlh1, Sohlh2, Gdf9) associated with oocyte growth and differentiation. The absence of FIGLA significantly impedes meiotic progression, causes DNA damage and results in oocyte apoptosis. Moreover, we find that FIGLA and other transcriptional regulator proteins (e.g. NOBOX, LHX8, SOHLH1, SOHLH2) are co-expressed in the same subset of germ cells in perinatal ovaries and Figla ablation dramatically disrupts KIT, NOBOX, LHX8, SOHLH1 and SOHLH2 abundance. In addition, not only do FIGLA, LHX8 and SOHLH1 cross-regulate each other, they also cooperate by direct interaction with each during early oocyte development and share downstream gene targets. Thus, our findings substantiate a major role for FIGLA, LHX8 and SOHLH1 as multifunctional regulators of networks necessary for oocyte maintenance and differentiation during early folliculogenesis.
生殖细胞转录因子控制基因网络,调节早期产后小鼠卵子发生过程中的卵母细胞分化和原始卵泡形成。利用缺乏在雌性生殖细胞中表达的转录因子的基因编辑小鼠,我们分析了野生型、FiglaNull、Lhx8Null 和 Sohlh1Null 小鼠围产期卵巢中的全基因表达谱。Figla 缺失失调与减数分裂相关基因(例如 Sycp3、Rad51、Ybx2)和各种基因(例如 Nobox、Lhx8、Taf4b、Sohlh1、Sohlh2、Gdf9)的表达有关,这些基因与卵母细胞生长和分化有关。FIGLA 的缺失显著阻碍减数分裂的进展,导致 DNA 损伤,并导致卵母细胞凋亡。此外,我们发现 FIGLA 和其他转录调控蛋白(例如 Nobox、Lhx8、SOHLH1、SOHLH2)在围产期卵巢中的同一批生殖细胞中共同表达,并且 Figla 缺失显著破坏 KIT、Nobox、LHX8、SOHLH1 和 SOHLH2 的丰度。此外,FIGLA、LHX8 和 SOHLH1 不仅相互交叉调节,而且在早期卵母细胞发育过程中通过直接相互作用合作,并且具有共同的下游基因靶点。因此,我们的研究结果证实了 FIGLA、LHX8 和 SOHLH1 在维持和分化早期卵泡发生过程中的卵母细胞所需的网络作为多功能调节剂的重要作用。