Theca cell mechanosensing and regulation of follicular extracellular matrix during ovarian follicle development
Ng, B. H.; Biswas, A.; Tomida, K.; Leong, K. W.; Lou, Y.; Lee, C. H.; Lanting, R.; Lu, T. B.; Hengst, R. M.; Nai, M. H.; Bonne, I.; Young, J. L.; Lim, C. T.; Chan, C. J.
Show abstract
Mammalian folliculogenesis is essential for female hormonal regulation and successful reproduction. While the steroidogenic functions of theca cells (TCs) have been implicated in ovarian diseases and infertility, the physico-structural properties of TCs and their associated extracellular matrix (ECM), or theca matrix, remain poorly understood. Using murine ovaries, we show that a stiff basement membrane (BM) and theca matrix constitute a mechanically instructive niche that modulates TC proliferation and Yes-associated protein (YAP) signalling in secondary follicles. We identify hyaluronic acid (HA) as a key matrix component that is actively secreted by contractile TCs. The HA scaffold, in turn, regulates TC proliferation, YAP signalling and motility, and is required for overall follicle growth. We showed that stiffer substrates enhance YAP nuclear transport in TCs, while mechanical stretch, cell packing, and curvature affect TC proliferation. In addition, TCs exhibit directed migration towards regions of positive curvature. Together, this study reveals a mechanochemical feedback mechanism that establishes TC mechanics and HA as key regulators of theca matrix formation that is essential for mammalian folliculogenesis. SIGNIFICANCEThe structural properties and mechanical functions of the basement membrane and theca cell-matrix encapsulating mammalian ovarian follicles are poorly understood. Our findings reveal that during early stage of follicle development, the basement membrane remains thin and stiff, while the theca cells actively secrete hyaluronic acid in a contractility-dependent manner. The hyaluronic acid scaffold, in turn, regulates theca cell YAP signalling, proliferation and motility that are required for functional growth of follicles. We further showed that the theca cells are mechanosensitive and fine-tune their proliferative capacity and Hippo pathways in response to substrate stiffness, stretch and curvature. Together, our study uncovers mechanoregulatory feedback between theca cells and associated extracellular matrix, offering new insights into environmental control of folliculogenesis in female reproduction.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Oncogenic RAS instructs morphological transformation of human epithelia via differential tissue mechanics. 94%
- Origin, specification and differentiation of a rare supporting-like lineage in the developing mouse gonad 93%
- Durotaxis bridges phase transition as a function of tissue stiffness in vivo 93%
Similar papers in this journal
- Oriented basement membrane fibrils provide a memory for F-actin planar polarization via the Dystrophin-Dystroglycan complex during tissue elongation 93%
- Live imaging in zebrafish reveals tissue-specific strategies for amoeboid migration 93%
- Temporal dynamics of BMP/Nodal ratio drive tissue-specific gastrulation morphogenesis 92%
Similar papers in this journal
Similar papers in this journal
- Defining the cell and molecular origins of the primate ovarian reserve 95%
- Nodal is a short-range morphogen with activity that spreads through a relay mechanism in human gastruloids 93%
- Chromatin- and actin-mediated mitochondrial streaming leads to patterning of mitochondrial distribution in oocytes 93%
"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.