Laboratory for Chromosome Segregation, RIKEN Center for Biosystems Dynamics Research (BDR), Kobe, Japan.
Faculty of Agriculture, Kyushu University, Fukuoka, Japan.
PLoS One. 2024 Oct 23;19(10):e0311978. doi: 10.1371/journal.pone.0311978. eCollection 2024.
Primordial follicle activation (PFA) is a pivotal event in female reproductive biology, coordinating the transition from quiescent to growing follicles. This study employed comprehensive single-cell RNA sequencing to gain insights into the detailed regulatory mechanisms governing the synchronized dormancy and activation between granulosa cells (GCs) and oocytes with the progression of the PFA process. Wntless (Wls) conditional knockout (cKO) mice served as a unique model, suppressing the transition from pre-GCs to GCs, and disrupting somatic cell-derived WNT signaling in the ovary. Our data revealed immediate transcriptomic changes in GCs post-PFA in Wls cKO mice, leading to a divergent trajectory, while oocytes exhibited modest transcriptomic alterations. Subpopulation analysis identified the molecular pathways affected by WNT signaling on GC maturation, along with specific gene signatures linked to dormant and activated oocytes. Despite minimal evidence of continuous up-regulation of dormancy-related genes in oocytes, the loss of WNT signaling in (pre-)GCs impacted gene expression in oocytes even before PFA, subsequently influencing them globally. The infertility observed in Wls cKO mice was attributed to compromised GC-oocyte molecular crosstalk and the microenvironment for oocytes. Our study highlights the pivotal role of the WNT-signaling pathway and its molecular signature, emphasizing the importance of intercellular crosstalk between (pre-)GCs and oocytes in orchestrating folliculogenesis.
原始卵泡激活(PFA)是女性生殖生物学中的一个关键事件,协调着从静止到生长卵泡的转变。本研究采用全面的单细胞 RNA 测序,深入了解调控颗粒细胞(GCs)和卵母细胞同步休眠和激活的详细调节机制,这些过程伴随着 PFA 过程的进展。Wntless(Wls)条件敲除(cKO)小鼠作为一个独特的模型,抑制了从前 GC 到 GC 的转变,并破坏了卵巢中体细胞衍生的 WNT 信号。我们的数据显示,Wls cKO 小鼠 PFA 后 GC 立即发生转录组变化,导致轨迹分歧,而卵母细胞仅表现出适度的转录组改变。亚群分析确定了 WNT 信号对 GC 成熟的分子途径的影响,以及与休眠和激活卵母细胞相关的特定基因特征。尽管卵母细胞中休眠相关基因持续上调的证据很少,但(前)GC 中 WNT 信号的缺失甚至在 PFA 之前就影响了卵母细胞中的基因表达,随后对其产生整体影响。Wls cKO 小鼠的不孕是由于 GC-卵母细胞分子串扰和卵母细胞微环境受损所致。我们的研究强调了 WNT 信号通路及其分子特征的关键作用,强调了(前)GC 和卵母细胞之间细胞间串扰在协调卵泡发生中的重要性。