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  • Resveratrol and its Related Polyphenols Contribute to the Maintenance of Genome Stability.

Resveratrol and its Related Polyphenols Contribute to the Maintenance of Genome Stability.

Scientific reports (2020-03-28)
Yusuke Matsuno, Yuko Atsumi, Md Alauddin, Md Masud Rana, Haruka Fujimori, Mai Hyodo, Atsuhiro Shimizu, Tomoki Ikuta, Hiroko Tani, Hidetaka Torigoe, Yoshimichi Nakatsu, Teruhisa Tsuzuki, Michio Komai, Hitoshi Shirakawa, Ken-Ichi Yoshioka
摘要

Genomic destabilisation is associated with the induction of mutations, including those in cancer-driver genes, and subsequent clonal evolution of cells with abrogated defence systems. Such mutations are not induced when genome stability is maintained; however, the mechanisms involved in genome stability maintenance remain elusive. Here, resveratrol (and related polyphenols) is shown to enhance genome stability in mouse embryonic fibroblasts, ultimately protecting the cells against the induction of mutations in the ARF/p53 pathway. Replication stress-associated DNA double-strand breaks (DSBs) that accumulated with genomic destabilisation were effectively reduced by resveratrol treatment. In addition, resveratrol transiently stabilised the expression of histone H2AX, which is involved in DSB repair. Similar effects on the maintenance of genome stability were observed for related polyphenols. Accordingly, we propose that polyphenol consumption can contribute to the suppression of cancers that develop with genomic instability, as well as lifespan extension.

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Sigma-Aldrich
抗-α微管蛋白抗体,小鼠单克隆抗体, clone B-5-1-2, purified from hybridoma cell culture
Sigma-Aldrich
Anti-p53 Binding Protein 1 (Ab-1) Rabbit pAb, liquid, Calbiochem®