FOSL2 Directly Regulates FSHR and CYP11A1 Transcription: An Essential Transcription Factor for Gonadotropin-Dependent Folliculogenesis
Shi, H.; Chen, C.; Ran, Z.; Liao, J.; Wu, Z.; Wang, X.; Zhao, Y.; Ke, W.; Tan, B.; Liu, Y.; Ren, W.; Li, X.; He, C.
Show abstract
The meticulous orchestration of gonadotropin-dependent folliculogenesis constitutes the cornerstone of female reproductive cyclicity and fertility, with FSH/FSHR signaling recognized as the master regulator. Achieving the necessary amplification of this signaling is essential for successful GTH-dependent folliculogenesis, yet the mechanisms remain inadequately defined. Our study utilizes single-cell and spatial transcriptomics to identify FOSL2 as an FSH-inducible transcription factor, exhibiting precise spatiotemporal co-expression with FSHR. FOSL2 knockdown in vitro resulted in notable reductions in granulosa cell proliferation, induced apoptosis, and disrupted gonadotropin-dependent folliculogenesis. In vivo studies using conditional FOSL2 deletion in mouse granulosa cells corroborated these results, demonstrating a complete halt in GTH-dependent folliculogenesis and resultant infertility. Mechanistic exploration unveiled that FSH/FSHR initiates FOSL2 expression via the cAMP/PKA/CREB cascade, while FOSL2 in turn enhances FSHR transcription through direct promoter binding, thereby establishing a self-amplifying loop. This loop represents a molecular switch, modeled to the all-or-nothing dynamics of GTH-dependent folliculogenesis. The evolutionary conservation of this mechanism was confirmed through cross-species analyses in sheep, where FOSL2 deficiency similarly attenuated FSH/FSHR signaling and inhibited follicular growth. Our findings advance the understanding of folliculogenesis by revealing a novel FOSL2-centered amplification loop for FSH/FSHR signaling, highlighting the indispensable role of FOSL2 in reproductive biology.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- PRMT5 regulates ovarian follicle development by facilitating Wt1 translation 97%
- N-cadherin mechanosensing in ovarian follicles controls oocyte maturation and ovulation 97%
- The autophagy protein, ATG14 safeguards against unscheduled pyroptosis activation to enable embryo transport during early pregnancy 96%
Similar papers in this journal
- Cellular heterogeneity of the LH receptor and its significance for cyclic GMP signaling in mouse preovulatory follicles 95%
- Nuclear Progestin Receptor Mediated Linkage of Blood Coagulation and Ovulation 94%
- The luteinizing hormone receptor knock-out mouse as a tool to probe the in vivo actions of gonadotropic hormones/receptors in females 94%
Similar papers in this journal
- Essential role of Bone morphogenetic protein 15 in porcine ovarian and follicular development and ovulation 96%
- Comprehensive molecular features of polycystic ovary syndrome revealed by transcriptome analysis of oocytes and cumulus cells 95%
- Alpha/Beta Hydrolase Domain-Containing Protein 2 regulates the rhythm of follicular maturation and estrous stages of the female reproductive cycle 95%
Similar papers in this journal
- Single cell transcriptomics reveal temporal dynamics of critical regulators of germ cell fate during mouse sex determination 94%
- Endometrial epithelial ARID1A is critical for uterine gland function in early pregnancy establishment 94%
- Single cell RNA sequencing redefines the mesenchymal cell landscape of mouse endometrium 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.