PPARγ lipodystrophy mutants reveal intermolecular interactions required for enhancer activation

Publication date

2022-11-19

Authors

Madsen, Maria Stahl
Broekema, Marjoleine F
Madsen, Martin Rønn
Koppen, Arjen
Borgman, Anouska
Gräwe, Cathrin
Thomsen, Elisabeth G K
Westland, Denise
Kranendonk, Mariette E G
Koerkamp, Marian Groot

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Peroxisome proliferator-activated receptor γ (PPARγ) is the master regulator of adipocyte differentiation, and mutations that interfere with its function cause lipodystrophy. PPARγ is a highly modular protein, and structural studies indicate that PPARγ domains engage in several intra- and inter-molecular interactions. How these interactions modulate PPARγ's ability to activate target genes in a cellular context is currently poorly understood. Here we take advantage of two previously uncharacterized lipodystrophy mutations, R212Q and E379K, that are predicted to interfere with the interaction of the hinge of PPARγ with DNA and with the interaction of PPARγ ligand binding domain (LBD) with the DNA-binding domain (DBD) of the retinoid X receptor, respectively. Using biochemical and genome-wide approaches we show that these mutations impair PPARγ function on an overlapping subset of target enhancers. The hinge region-DNA interaction appears mostly important for binding and remodelling of target enhancers in inaccessible chromatin, whereas the PPARγ-LBD:RXR-DBD interface stabilizes the PPARγ:RXR:DNA ternary complex. Our data demonstrate how in-depth analyses of lipodystrophy mutants can unravel molecular mechanisms of PPARγ function.

Keywords

Humans, PPAR gamma/genetics, Adipocytes/metabolism, Retinoid X Receptors/genetics, Lipodystrophy/metabolism, Regulatory Sequences, Nucleic Acid, General, General Physics and Astronomy, General Chemistry, General Biochemistry,Genetics and Molecular Biology

Citation

Madsen, M S, Broekema, M F, Madsen, M R, Koppen, A, Borgman, A, Gräwe, C, Thomsen, E G K, Westland, D, Kranendonk, M E G, Koerkamp, M G, Hamers, N, Bonvin, A M J J, Pittol, J M R, Natarajan, K N, Kersten, S, Holstege, F C P, Monajemi, H, van Mil, S W C, Vermeulen, M, Kragelund, B B, Cassiman, D, Mandrup, S & Kalkhoven, E 2022, 'PPARγ lipodystrophy mutants reveal intermolecular interactions required for enhancer activation', Nature Communications, vol. 13, no. 1, 7090, pp. 1-19. https://doi.org/10.1038/s41467-022-34766-9