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Microbiology (Reading, England)|May 27, 2014
Identification of a Salmonella ancillary copper detoxification mechanism by a comparative analysis of the genome-wide transcriptional response to copper and zinc excessLucas B Pontel, Nadia L Scampoli, Steffen Porwollik, et al.Journal of Cell Science|November 23, 2016
Xpf suppresses the mutagenic consequences of phagocytosis in DictyosteliumLucas B Pontel, Judith Langenick, Ivan V Rosado, et al.Journal of the American Chemical Society|April 5, 2017
Development of a General Aza-Cope Reaction Trigger Applied to Fluorescence Imaging of Formaldehyde in Living CellsKevin J Bruemmer, Ryan R Walvoord, Thomas F Brewer, et al.Nucleic Acids Research|June 19, 2024
Distinct DNA repair mechanisms prevent formaldehyde toxicity during development, reproduction and agingMatthias Rieckher, Christian Gallrein, Natividad Alquezar-Artieda, et al.Aging Cell|July 16, 2024
The SASP factor IL-6 sustains cell-autonomous senescent cells via a cGAS-STING-NFκB intracrine senescent noncanonical pathwayFlorencia Herbstein, Melanie Sapochnik, Alejandra Attorresi, et al.Molecular Cell|September 29, 2015
Endogenous Formaldehyde Is a Hematopoietic Stem Cell Genotoxin and Metabolic CarcinogenLucas B Pontel, Ivan V Rosado, Guillermo Burgos-Barragan, et al.Nature Communications|February 9, 2022
Endogenous formaldehyde scavenges cellular glutathione resulting in redox disruption and cytotoxicityCarla Umansky, Agustín E Morellato, Matthias Rieckher, et al.Nature|August 17, 2017
Mammals divert endogenous genotoxic formaldehyde into one-carbon metabolismGuillermo Burgos-Barragan, Niek Wit, Johannes Meiser, et al.Nature|February 8, 2018
Erratum: Mammals divert endogenous genotoxic formaldehyde into one-carbon metabolismGuillermo Burgos-Barragan, Niek Wit, Johannes Meiser, et al.Science (New York, N.Y.)|November 2, 2023
Formaldehyde regulates S-adenosylmethionine biosynthesis and one-carbon metabolismVanha N Pham, Kevin J Bruemmer, Joel D W Toh, et al.Pageof 3