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MYC competes with MiT/TFE in regulating lysosomal biogenesis and autophagy through an epigenetic rheostat

Please always quote using this URN: urn:nbn:de:bvb:20-opus-221189
  • Coordinated regulation of the lysosomal and autophagic systems ensures basal catabolism and normal cell physiology, and failure of either system causes disease. Here we describe an epigenetic rheostat orchestrated by c-MYC and histone deacetylases that inhibits lysosomal and autophagic biogenesis by concomitantly repressing the expression of the transcription factors MiT/TFE and FOXH1, and that of lysosomal and autophagy genes. Inhibition of histone deacetylases abates c-MYC binding to the promoters of lysosomal and autophagy genes, grantingCoordinated regulation of the lysosomal and autophagic systems ensures basal catabolism and normal cell physiology, and failure of either system causes disease. Here we describe an epigenetic rheostat orchestrated by c-MYC and histone deacetylases that inhibits lysosomal and autophagic biogenesis by concomitantly repressing the expression of the transcription factors MiT/TFE and FOXH1, and that of lysosomal and autophagy genes. Inhibition of histone deacetylases abates c-MYC binding to the promoters of lysosomal and autophagy genes, granting promoter occupancy to the MiT/TFE members, TFEB and TFE3, and/or the autophagy regulator FOXH1. In pluripotent stem cells and cancer, suppression of lysosomal and autophagic function is directly downstream of c-MYC overexpression and may represent a hallmark of malignant transformation. We propose that, by determining the fate of these catabolic systems, this hierarchical switch regulates the adaptive response of cells to pathological and physiological cues that could be exploited therapeutically.show moreshow less

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Metadaten
Author: Ida Annunziata, Diantha van de Vlekkert, Elmar Wolf, David Finkelstein, Geoffrey Neale, Eda Machado, Rosario Mosca, Yvan Campos, Heather Tillman, Martine F. Roussel, Jason Andrew Weesner, Leigh Ellen Fremuth, Xiaohui Qiu, Min-Joon Han, Gerard C. Grosveld, Alessandra d'Azzo
URN:urn:nbn:de:bvb:20-opus-221189
Document Type:Journal article
Faculties:Fakultät für Biologie / Theodor-Boveri-Institut für Biowissenschaften
Language:English
Parent Title (English):Nature Communications
Year of Completion:2019
Volume:10
Article Number:3623
Source:Nature Communications (2019) 10:3623. https://doi.org/10.1038/s41467-019-11568-0
DOI:https://doi.org/10.1038/s41467-019-11568-0
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Tag:autophagy; cancer; cancer metabolism; cell biology; mechanisms of disease
Release Date:2024/05/31
Licence (German):License LogoCC BY: Creative-Commons-Lizenz: Namensnennung 4.0 International