Helmholtz Gemeinschaft

Search
Browse
Statistics
Feeds

RNF20 links the DNA damage response and metabolic rewiring in lung cancer through HIF1α

[thumbnail of Original Article]
Preview
PDF (Original Article) - Requires a PDF viewer such as GSview, Xpdf or Adobe Acrobat Reader
14MB
[thumbnail of Supplementary Information] Other (Supplementary Information)
41MB

Item Type:Article
Title:RNF20 links the DNA damage response and metabolic rewiring in lung cancer through HIF1α
Creators Name:Liu, H., Tang, Y., Singh, A., Vong, J., Cordero, J., Mathes, A., Gao, R., Jia, Y., Garvalov, B.K., Acker, T., Poschet, G., Hell, R., Schneider, M.A., Heineke, J., Wieland, T., Barreto, G., Cerwenka, A., Potente, M., Bibli, S.I., Savai, R. and Dobreva, G.
Abstract:Defective DNA repair and metabolic rewiring are highly intertwined in promoting the development and progression of cancer. However, the molecular players at their interface remain poorly understood. Here we show that an RNF20-HIF1α axis links the DNA damage response and metabolic reprogramming in lung cancer. We demonstrate that RNF20, which catalyzes monoubiquitylation of histone H2B (H2Bub1), controls Rbx1 expression and thereby the activity of the VHL ubiquitin ligase complex and HIF1α levels. Ablation of a single Rnf20 allele significantly increases the incidence of lung tumors in mice. Mechanistically, Rnf20 haploinsufficiency results in inadequate tumor suppression via the Rnf20-H2Bub1-p53 axis and induces DNA damage, cell growth, epithelial-mesenchymal transition (EMT), and metabolic rewiring through HIF1α-mediated RNA polymerase II promoter-proximal pause release, which is independent of H2Bub1. Importantly, decreased RNF20 levels correlate with increased expression of HIF1α and its target genes, suggesting HIF1α inhibition as a promising therapeutic approach for lung cancer patients with reduced RNF20 activity.
Keywords:Alpha Subunit Hypoxia-Inducible Factor 1, DNA Damage, DNA Repair, Epithelial-Mesenchymal Transition, Histones, Knockout Mice, Lung Neoplasms, Neoplastic Gene Expression Regulation, RNA Polymerase II, Tumor Cell Line, Tumor Suppressor Protein p53, Ubiquitin-Protein Ligases, Ubiquitination, Von Hippel-Lindau Tumor Suppressor Protein, Animals, Mice
Source:Nature Communications
ISSN:2041-1723
Publisher:Nature Publishing Group
Volume:16
Number:1
Page Range:4929
Date:28 May 2025
Official Publication:https://doi.org/10.1038/s41467-025-60223-4
PubMed:View item in PubMed

Repository Staff Only: item control page

Downloads

Downloads per month over past year

Open Access
MDC Library