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Publication : H2A.Z is involved in premature aging and DSB repair initiation in muscle fibers.

First Author  Belotti E Year  2024
Journal  Nucleic Acids Res Volume  52
Issue  6 Pages  3031-3049
PubMed ID  38281187 Mgi Jnum  J:360827
Mgi Id  MGI:7761851 Doi  10.1093/nar/gkae020
Citation  Belotti E, et al. (2024) H2A.Z is involved in premature aging and DSB repair initiation in muscle fibers. Nucleic Acids Res 52(6):3031-3049
abstractText  Histone variants are key epigenetic players, but their functional and physiological roles remain poorly understood. Here, we show that depletion of the histone variant H2A.Z in mouse skeletal muscle causes oxidative stress, oxidation of proteins, accumulation of DNA damages, and both neuromuscular junction and mitochondria lesions that consequently lead to premature muscle aging and reduced life span. Investigation of the molecular mechanisms involved shows that H2A.Z is required to initiate DNA double strand break repair by recruiting Ku80 at DNA lesions. This is achieved via specific interactions of Ku80 vWA domain with H2A.Z. Taken as a whole, our data reveal that H2A.Z containing nucleosomes act as a molecular platform to bring together the proteins required to initiate and process DNA double strand break repair.
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