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Genome-wide analysis of promoter contacts identifies novel regulators of late-stage adipogenesis

Sandovici, I.; Mifsud, B.; Emery, A.; Gulati, P.; Kentistou, K. A.; Banu, A.; Hardwick, B. S.; Campbell, N.; Crooks, A. T.; Fernandez-Twinn, D. S.; Mennitti, L. V.; Srour, L.; Awad, S.; Chiarugi, D.; Hamilton, R. H.; Wingett, S. W.; Fraser, P.; Ong, K. K.; Shoenfelder, S.; Mohammad, F.; O'Rahilly, S.; Perry, J. R. B.; Venkitaraman, A. R.; E. Ozanne, S.; Constancia, M.

2023-06-30 genetics
10.1101/2023.06.27.546683 bioRxiv
Show abstract

Adipogenesis is a multi-stage process essential for healthy fat storage and metabolic regulation. While early regulatory mechanisms are well characterized, the control of late-stage adipocyte differentiation remains poorly understood. Integrating CAGE-seq, promoter capture Hi-C, and a high-throughput siRNA screen of druggable genes, we report here that chromatin architecture rewiring promotes gene regulation changes essential for terminal adipogenesis. We identified nine clusters of dynamic promoter-anchored chromosomal interactions, many involving distal enhancers. Functional screening of genes engaged in these interactions revealed 19 novel regulators of late adipogenesis, including proteins with peptidase and ubiquitin ligase activity. Human genetic variant-to-gene mapping, coupled with cross-species chromatin interaction and synteny analyses, highlighted new gene-trait associations relevant to lipid traits (FXYD5, LAP3, SGPP1) and type 2 diabetes (FBXO17, FN3KRP, ZFAND6, TTC3). Our findings define the 3D gene regulatory landscape of late adipogenesis. The molecular links uncovered here provide mechanistic insight into metabolic disease risk and potential interventions.

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