Jan Hoeijmakers

Affiliations: 
Erasmus University Rotterdam, Rotterdam, Netherlands 
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"Jan Hoeijmakers"

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Piet Borst grad student 1982 Amsterdam (Chemistry Tree)
 (Trypanosomes : kinetoplast dna and antigenic variation)
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Publications

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Soheili-Nezhad S, Ibáñez-Solé O, Izeta A, et al. (2024) Time is ticking faster for long genes in aging. Trends in Genetics : Tig. 40: 299-312
van Thiel BS, de Boer M, Ridwan Y, et al. (2024) Hybrid Molecular and Functional Micro-CT Imaging Reveals Increased Myocardial Apoptosis Preceding Cardiac Failure in Progeroid Ercc1 Mice. Molecular Imaging and Biology
Pines A, Schiffmacher DL, Lee SH, et al. (2023) DDA1, a novel factor in transcription-coupled repair, modulates CRL4CSA dynamics at DNA damage-stalled RNA polymerase II. Research Square
Barnhoorn S, Meima ME, Peeters RP, et al. (2023) Decreased hepatic thyroid hormone signaling in systemic and liver-specific but not brain-specific accelerated aging due to DNA repair deficiency in mice. European Thyroid Journal. 12
Birkisdóttir MB, Van't Sant LJ, Brandt RMC, et al. (2023) Purkinje-cell-specific DNA repair-deficient mice reveal that dietary restriction protects neurons by cell-intrinsic preservation of genomic health. Frontiers in Aging Neuroscience. 14: 1095801
de Boer M, Te Lintel Hekkert M, Chang J, et al. (2023) DNA repair in cardiomyocytes is critical for maintaining cardiac function in mice. Aging Cell. e13768
Gyenis A, Chang J, Demmers JJPG, et al. (2023) Genome-wide RNA polymerase stalling shapes the transcriptome during aging. Nature Genetics
Birkisdóttir MB, van Galen I, Brandt RMC, et al. (2022) Corrigendum: The use of progeroid DNA repair-deficient mice for assessing anti-aging compounds, illustrating the benefits of nicotinamide riboside. Frontiers in Aging. 3: 1086552
Birkisdóttir MB, van Galen I, Brandt RMC, et al. (2022) The use of progeroid DNA repair-deficient mice for assessing anti-aging compounds, illustrating the benefits of nicotinamide riboside. Frontiers in Aging. 3: 1005322
Kajitani GS, Quayle C, Garcia CCM, et al. (2022) Photorepair of Either CPD or 6-4PP DNA Lesions in Basal Keratinocytes Attenuates Ultraviolet-Induced Skin Effects in Nucleotide Excision Repair Deficient Mice. Frontiers in Immunology. 13: 800606
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