Search results (68)
« Back to PublicationsMetabolite-induced DNA damage drives stochastic stem cell loss and clonal hematopoiesis.
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Kamimae-Lanning AN. et al, (2026), Cell Stem Cell
DNA polymerase kappa is the primary translesion synthesis polymerase for aldehyde ICLs.
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van der Sluijs RV. et al, (2025), Nucleic Acids Res, 53
Embracing cancer complexity: Hallmarks of systemic disease.
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Swanton C. et al, (2024), Cell, 187, 1589 - 1616
Aldehyde-mediated inhibition of asparagine biosynthesis has implications for diabetes and alcoholism.
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John T. et al, (2024), Chem Sci, 15, 2509 - 2517
Formaldehyde regulates S-adenosylmethionine biosynthesis and one-carbon metabolism.
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Pham VN. et al, (2023), Science, 382
Genotoxic aldehyde stress prematurely ages hematopoietic stem cells in a p53-driven manner.
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Wang M. et al, (2023), Mol Cell, 83, 2417 - 2433.e7
A histone deacetylase 3 and mitochondrial complex I axis regulates toxic formaldehyde production.
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Wit N. et al, (2023), Sci Adv, 9
Efficient Synthesis of DNA Duplexes Containing Reduced Acetaldehyde Interstrand Cross-Links.
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Morton SB. et al, (2023), J Am Chem Soc, 145, 953 - 959
Genotoxic aldehydes in the hematopoietic system.
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Wang M. et al, (2022), Blood, 139, 2119 - 2129
Aldehyde-driven transcriptional stress triggers an anorexic DNA damage response.
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Mulderrig L. et al, (2021), Nature, 600, 158 - 163
Two Aldehyde Clearance Systems Are Essential to Prevent Lethal Formaldehyde Accumulation in Mice and Humans.
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Dingler FA. et al, (2020), Mol Cell, 80, 996 - 1012.e9
Amino acid dependent formaldehyde metabolism in mammals.
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Pietzke M. et al, (2020), Commun Chem, 3
FANCD2-FANCI is a clamp stabilized on DNA by monoubiquitination of FANCD2 during DNA repair.
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Alcón P. et al, (2020), Nat Struct Mol Biol, 27, 240 - 248
Alcohol-derived DNA crosslinks are repaired by two distinct mechanisms.
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Hodskinson MR. et al, (2020), Nature, 579, 603 - 608
Structure of the Fanconi anaemia monoubiquitin ligase complex.
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Shakeel S. et al, (2019), Nature, 575, 234 - 237