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Acacetin and chrysin, two polyphenolic compounds, alleviate telomeric position effect in human cells.


ABSTRACT: We took advantage of the ability of human telomeres to silence neighboring genes (telomere position effect or TPE) to design a high-throughput screening assay for drugs altering telomeres. We identified, for the first time, that two dietary flavones, acacetin and chrysin, are able to specifically alleviate TPE in human cells. We further investigated their influence on telomere integrity and showed that both drugs drastically deprotect telomeres against DNA damage response. However, telomere deprotection triggered by shelterin dysfunction does not affect TPE, indicating that acacetin and chrysin target several functions of telomeres. These results show that TPE-based screening assays represent valuable methods to discover new compounds targeting telomeres.Molecular Therapy-Nucleic Acids (2013) 2, e116; doi:10.1038/mtna.2013.42; published online 20 August 2013.

SUBMITTER: Boussouar A 

PROVIDER: S-EPMC3759739 | biostudies-literature | 2013 Aug

REPOSITORIES: biostudies-literature

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Acacetin and chrysin, two polyphenolic compounds, alleviate telomeric position effect in human cells.

Boussouar Amina A   Barette Caroline C   Nadon Robert R   Saint-Léger Adelaïde A   Broucqsault Natacha N   Ottaviani Alexandre A   Firozhoussen Arva A   Lu Yiming Y   Lafanechère Laurence L   Gilson Eric E   Magdinier Frédérique F   Ye Jing J  

Molecular therapy. Nucleic acids 20130820


We took advantage of the ability of human telomeres to silence neighboring genes (telomere position effect or TPE) to design a high-throughput screening assay for drugs altering telomeres. We identified, for the first time, that two dietary flavones, acacetin and chrysin, are able to specifically alleviate TPE in human cells. We further investigated their influence on telomere integrity and showed that both drugs drastically deprotect telomeres against DNA damage response. However, telomere depr  ...[more]

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