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A STAT5-Smad3 dyad regulates adipogenic plasticity of visceral adipose mesenchymal stromal cells during chronic inflammation

Medicine and Health

A STAT5-Smad3 dyad regulates adipogenic plasticity of visceral adipose mesenchymal stromal cells during chronic inflammation

R. Das, J. Giri, et al.

This groundbreaking study reveals that adipogenic differentiation of visceral adipose tissue-resident multipotent mesenchymal stromal cells (VA-MSC) is hindered by the interaction of key inhibitors IFNγ and TGFβ. Researchers identified a complex mechanism involving STAT5 and Smad3 that maintains MSC plasticity, with implications for metabolic health. The research was conducted by Rahul Das, Jayeeta Giri, Pradyut K. Paul, Nicole Froelich, Raghavan Chinnadurai, Sara McCoy, Wade Bushman, and Jacques Galipeau.... show more
Abstract
Adipogenic differentiation of visceral adipose tissue-resident multipotent mesenchymal stromal cells (VA-MSC) into adipocytes is metabolically protective. Under chronic inflammatory stress, this neoadipogenesis process is suppressed by various pro-inflammatory cytokines and growth factors. However, the underlying mechanism(s) regulating VA-MSC plasticity remains largely unexplored. Using an adipogenic differentiation screen, we identified IFNγ and TGFβ as key inhibitors of primary human VA-MSC differentiation. Further studies using human and mouse VA-MSCs and a chronic high-fat diet-fed murine model revealed that IFNγ/JAK2-activated STAT5 transcription factor is a central regulator of VA-MSC differentiation under chronic inflammatory conditions. Furthermore, our results indicate that under such conditions, IFNγ-activated STAT5 and TGFβ-activated Smad3 physically interact via Smad4. This STAT5-Smad4-Smad3 complex plays a crucial role in preventing the early adipogenic commitment of VA-MSCs by suppressing key pro-adipogenic transcription factors, including CEBPβ, CEBPα, and PPARγ. Genetic or pharmacological disruption of IFNγ-TGFβ synergy by inhibiting either STAT5 or Smad3 rescued adipogenesis under chronic inflammatory stress. Overall, our study delineates a central mechanism of MSC plasticity regulation by the convergence of multiple inflammatory signaling pathways.
Publisher
npj Regenerative Medicine
Published On
Aug 31, 2022
Authors
Rahul Das, Jayeeta Giri, Pradyut K. Paul, Nicole Froelich, Raghavan Chinnadurai, Sara McCoy, Wade Bushman, Jacques Galipeau
Tags
adipogenic differentiation
VA-MSC
IFNγ
TGFβ
transcription factors
STAT5
Smad3
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