Prenatal stress induces changes in PAR2- and M3-dependent regulation of colon primitive cells
Mathieu Berger1, Laura Guiraud1, Alexia Dumas1
1Institut de Recherche en Santé Digestive, INSERM U1220, Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement, Ecole Nationale Vétérinaire de Toulouse, University of Toulouse, Toulouse, France.
Insights
Prenatal stress negatively impacts male colon stem cell function, while female stem cells adapt via sexually dimorphic mechanisms involving PAR2 and M3 receptors.
Area of Science:
- Gastroenterology
- Developmental Biology
- Cell Biology
Background:
- Prenatal stress is linked to adult intestinal diseases like IBS and cancer.
- Epithelial stem cells are crucial in intestinal health, but their response to prenatal stress is unclear.
Purpose of the Study:
- To investigate how prenatal stress affects the proliferative and differentiation capacities of colon epithelial stem and progenitor cells in male and female mice.
Main Methods:
- Isolated colon crypts from adult mice exposed to prenatal stress during gestation.
- Assessed in vitro proliferation and differentiation of primitive epithelial cells.
- Analyzed the roles of protease-activated receptor 2 (PAR2) and muscarinic receptor 3 (M3) signaling.
Main Results:
- Prenatal stress impaired stem/progenitor proliferation and differentiation in male mice, mediated by reinforced PAR2 and M3 negative control.
- In female mice, prenatal stress did not alter in vitro proliferation, associated with a functional switch in M3 negative control to a proliferative role.
- PAR2's proliferative role in females was maintained despite increased stress signals, with a potential role for epithelial serine protease.
Conclusions:
- Prenatal stress induces sexually dimorphic responses in colon primitive cells.
- These adaptive mechanisms in females involve altered M3 and PAR2 signaling, leading to a resistant, proliferative phenotype.
- Dysregulated crypt regeneration due to these sex-specific responses may contribute to intestinal pathologies.
Abstract:
Prenatal stress is associated with a high risk of developing adult intestinal pathologies, such as irritable bowel syndrome, chronic inflammation, and cancer. Although epithelial stem cells and progenitors have been implicated in intestinal pathophysiology, how prenatal stress could impact their functions is still unknown. We have investigated the proliferative and differentiation capacities of primitive cells using epithelial crypts isolated from colons of adult male and female mice whose mothers have been stressed during late gestation. Our results show that stem cell/progenitor proliferation and differentiation in vitro are negatively impacted by prenatal stress in male progeny. This is promoted by a reinforcement of the negative proliferative/differentiation control by the protease-activated receptor 2 (PAR2) and the muscarinic receptor 3 (M3), two G protein-coupled receptors present in the crypt. Conversely, prenatal stress does not change in vitro proliferation of colon primitive cells in female progeny. Importantly, this maintenance is associated with a functional switch in the M3 negative control of colonoid growth, becoming proliferative after prenatal stress. In addition, the proliferative role of PAR2 specific to females is maintained under prenatal stress, even though PAR2-targeted stress signals Dusp6 and activated GSK3β are increased, reaching the levels of males. An epithelial serine protease could play a critical role in the activation of the survival kinase GSK3β in colonoids from prenatally stressed female progeny. Altogether, our results show that following prenatal stress, colon primitive cells cope with stress through sexually dimorphic mechanisms that could pave the way to dysregulated crypt regeneration and intestinal pathologies.NEW & NOTEWORTHY Primitive cells isolated from mouse colon following prenatal stress and exposed to additional stress conditions such as in vitro culture, present sexually dimorphic mechanisms based on PAR2- and M3-dependent regulation of proliferation and differentiation. Whereas prenatal stress reinforces the physiological negative control exerted by PAR2 and M3 in crypts from males, in females, it induces a switch in M3- and PAR2-dependent regulation leading to a resistant and proliferative phenotype of progenitor.
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