Metformin inhibits age-related centrosome amplification in Drosophila midgut stem cells through AKT/TOR pathway
pmid: 25988874
Metformin inhibits age-related centrosome amplification in Drosophila midgut stem cells through AKT/TOR pathway
We delineated the mechanism regulating the inhibition of centrosome amplification by metformin in Drosophila intestinal stem cells (ISCs). Age-related changes in tissue-resident stem cells may be closely associated with tissue aging and age-related diseases, such as cancer. Centrosome amplification is a hallmark of cancers. Our recent work showed that Drosophila ISCs are an excellent model for stem cell studies evaluating age-related increase in centrosome amplification. Here, we showed that metformin, a recognized anti-cancer drug, inhibits age- and oxidative stress-induced centrosome amplification in ISCs. Furthermore, we revealed that this effect is mediated via down-regulation of AKT/target of rapamycin (TOR) activity, suggesting that metformin prevents centrosome amplification by inhibiting the TOR signaling pathway. Additionally, AKT/TOR signaling hyperactivation and metformin treatment indicated a strong correlation between DNA damage accumulation and centrosome amplification in ISCs, suggesting that DNA damage might mediate centrosome amplification. Our study reveals the beneficial and protective effects of metformin on centrosome amplification via AKT/TOR signaling modulation. We identified a new target for the inhibition of age- and oxidative stress-induced centrosome amplification. We propose that the Drosophila ISCs may be an excellent model system for in vivo studies evaluating the effects of anti-cancer drugs on tissue-resident stem cell aging.
- Wayne State College United States
- Pusan National University Korea (Republic of)
- Wayne State University United States
Centrosome, Male, Paraquat, TOR Serine-Threonine Kinases, Green Fluorescent Proteins, Down-Regulation, Antineoplastic Agents, Metformin, Intestines, Ageing, Oxidative Stress, Animals, Hypoglycemic Agents, Drosophila, Female, Proto-Oncogene Proteins c-akt, Cellular Senescence, Developmental Biology, DNA Damage, Signal Transduction
Centrosome, Male, Paraquat, TOR Serine-Threonine Kinases, Green Fluorescent Proteins, Down-Regulation, Antineoplastic Agents, Metformin, Intestines, Ageing, Oxidative Stress, Animals, Hypoglycemic Agents, Drosophila, Female, Proto-Oncogene Proteins c-akt, Cellular Senescence, Developmental Biology, DNA Damage, Signal Transduction
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