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Forkhead homeobox type O transcription factors in the responses to oxidative stress

Review · human · Antioxidants & redox signaling · 2011 · DOI 10.1089/ars.2010.3405 · PMID 20618067

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This review (species not specified) discusses the forkhead homeobox type O (FOXO) transcription factors FOXO1, FOXO3a, and FOXO4 as mediators of cellular responses to oxidative stress. It describes roles for reactive oxygen species and oxidative stress in aging, migration, proliferation, senescence, and death of normal and cancer cells, and states that in cancer cells FOXOs can direct oxidative stress signaling toward cell cycle arrest, cell death, or a motile phenotype depending on posttranslational modification. The review also notes that FOXOs can regulate detoxification from reactive oxygen species and stress resistance in stem cells, characterizing FOXO factors as relevant to tumor survival or progression, stem cell maintenance, age-related pathological processes, and lifespan.

Abstract

Reactive oxygen species (ROS) and cellular oxidative stress are involved in many physiological and pathophysiological processes, including cellular and organismal aging, migration, proliferation, senescence or death of normal and cancer cells, and stress resistance of stem cells. The forkhead homeobox type O (FOXO) transcription factors FOXO1, FOXO3a, and FOXO4 are critical mediators of the cellular responses to oxidative stress and have been implicated in many of the above ROS-regulated processes. In cancer cells they converge oxidative stress signaling to cell cycle arrest and cell death or promote a motile phenotype. Dependent on their posttranslational modifications FOXOs can also actively regulate the detoxification of cells from ROS and promote stress resistance. Thus, FOXO transcription factors are of vital importance in processes regulating tumor survival or progression, stem cell maintenance, age-related pathological processes, and lifespan extension.

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