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A dynamic HIF1alpha-PPARgamma circuit controls a paradoxical adipocyte regulatory landscape

Kudo, T.; Zhao, M. L.; Kovary, K. M.; LaGory, E. L.; Covert, M. W.; Teruel, M. N.

2022-05-18 systems biology
10.1101/2022.05.17.492374 bioRxiv
Show abstract

Hypoxia-induced upregulation of HIF1 triggers adipose tissue dysfunction and insulin resistance in obese patients. HIF1 closely interacts with PPAR{gamma}, the master regulator of adipocyte differentiation and lipid accumulation, but there are conflicting results how this co-regulation controls the excessive lipid accumulation that drives adipocyte dysfunction. Using single-cell imaging and modeling, we find that, surprisingly, HIF1 both promotes and represses lipid accumulation during adipogenesis. We show that the opposing roles of HIF1 are isolated from each other and depend on when HIF1 increases relative to the positive-feedback mediated upregulation of PPAR{gamma} that drives adipocyte differentiation. A theoretical model incorporating our findings resolves conflicting prior results and suggests that three network nodes before and after the isolation step have to be synergistically targeted in therapeutic strategies to revert hypoxia-mediated adipose tissue dysfunction in obesity. TeaserA systems biology approach detangles the effect of hypoxic and adipogenic regulators on lipid accumulation in adipocytes.

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