bioRxiv · 10.1101/2020.01.27.921171
Overarching control of autophagy and DNA damage response by CHD6 revealed by modeling a rare human pathology
Abstract
Members of the chromodomain-helicase-DNA binding (CHD) protein family are chromatin remodelers critically implicated in human pathologies, with CHD6 being one of its least studied members. Here, we discovered a de novo CHD6 missense mutation in a patient clinically presenting the rare Hallermann-Streiff syndrome (HSS). We used genome editing to generate isogenic iPSC lines and model HSS in relevant cell types. We show that CHD6 binds a cohort of autophagy and stress response genes across cell types. The HSS-mutation affects CHD6 protein folding and impairs its ability to recruit co-factors in response to DNA damage or autophagy stimulation. This leads to an accumulation of DNA damage burden and to senescence-like phenotypes. By combining genomics and functional assays, we describe for the first time a molecular mechanism for the chromatin control of autophagic flux and genotoxic stress surveillance that applies broadly to human cell types and explains HSS onset.
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Kargapolova, Y., Rehimi, R., Kayserli, H., Bruehl, J., Zirkel, A., Li, Y., Yigit, G., Hoischen, A., Frank, S., Russ, N., Trautwein, J., Laugsch, M., Gusmao, E. G., Josipovic, N., Altmeuller, J., Nuernberg, P., Laengst, G., Kaiser, F. J., Watrin, E., Brunner, H., Rada-Iglesias, A., Kurian, L., Wollnik, B., Bouazoune, K., Papantonis, A.. 2020-01-27. Overarching control of autophagy and DNA damage response by CHD6 revealed by modeling a rare human pathology. https://doi.org/10.1101/2020.01.27.921171
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