Genotoxic aldehyde stress prematurely ages hematopoietic stem cells in a p53-driven manner
Publication date
2023-07-20
Authors
Wang, Meng
Brandt, Laura T.L.
Wang, Xiaonan
Russell, Holly
Mitchell, Emily
Kamimae-Lanning, Ashley N.
Brown, Jill M.
Dingler, Felix A.
Garaycoechea, Juan I.
Isobe, Tomoya
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
Aged hematopoietic stem cells (HSCs) display diminished self-renewal and a myeloid differentiation bias. However, the drivers and mechanisms that underpin this fundamental switch are not understood. HSCs produce genotoxic formaldehyde that requires protection by the detoxification enzymes ALDH2 and ADH5 and the Fanconi anemia (FA) DNA repair pathway. We find that the HSCs in young Aldh2−/− Fancd2−/− mice harbor a transcriptomic signature equivalent to aged wild-type HSCs, along with increased epigenetic age, telomere attrition, and myeloid-biased differentiation quantified by single HSC transplantation. In addition, the p53 response is vigorously activated in Aldh2−/− Fancd2−/− HSCs, while p53 deletion rescued this aged HSC phenotype. To further define the origins of the myeloid differentiation bias, we use a GFP genetic reporter to find a striking enrichment of Vwf+ myeloid and megakaryocyte-lineage-biased HSCs. These results indicate that metabolism-derived formaldehyde-DNA damage stimulates the p53 response in HSCs to drive accelerated aging.
Keywords
aging, aldehydes, DNA damage, DNA-damage response, hematopoiesis, myeloid bias, p53, Molecular Biology, Cell Biology
Citation
Wang, M, Brandt, L T L, Wang, X, Russell, H, Mitchell, E, Kamimae-Lanning, A N, Brown, J M, Dingler, F A, Garaycoechea, J I, Isobe, T, Kinston, S J, Gu, M, Vassiliou, G S, Wilson, N K, Göttgens, B & Patel, K J 2023, 'Genotoxic aldehyde stress prematurely ages hematopoietic stem cells in a p53-driven manner', Molecular Cell, vol. 83, no. 14, pp. 2417-2433.e7. https://doi.org/10.1016/j.molcel.2023.05.035