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Sinclair, David

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Sinclair

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David

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Sinclair, David

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Now showing 1 - 3 of 3
  • Publication

    Resveratrol improves health and survival of mice on a high-calorie diet

    (Nature Publishing Group, 2006) Baur, Joseph A.; Pearson, Kevin J.; Price, Nathaniel; Jamieson, Hamish A.; Lerin, Carles; Kalra, Avash; Prabhu, Vinayakumar V.; Allard, Joanne S.; Lopez-Lluch, Guillermo; Lewis, Kaitlyn; Pistell, Paul J.; Poosala, Suresh; Becker, Kevin G.; Boss, Olivier; Gwinn, Dana; Wang, Mingyi; Ramaswamy, Sharan; Fishbein, Kenneth W.; Spencer, Richard; Lakatta, Edward G.; Le Couteur, David; Shaw, Reuben J.; Navas, Placido; Puigserver, Pere Puigserver; Ingram, Donald K.; de Cabo, Rafael; Sinclair, David

    Resveratrol (3,5,4′-trihydroxystilbene) extends the lifespan of diverse species including Saccharomyces cerevisiae, Caenorhabditis elegans and Drosophila melanogaster. In these organisms, lifespan extension is dependent on Sir2, a conserved deacetylase proposed to underlie the beneficial effects of caloric restriction. Here we show that resveratrol shifts the physiology of middle-aged mice on a high-calorie diet towards that of mice on a standard diet and significantly increases their survival. Resveratrol produces changes associated with longer lifespan, including increased insulin sensitivity, reduced insulin-like growth factor-1 (IGF-I) levels, increased AMP-activated protein kinase (AMPK) and peroxisome proliferator-activated receptor-γ coactivator 1α (PGC-1α) activity, increased mitochondrial number, and improved motor function. Parametric analysis of gene set enrichment revealed that resveratrol opposed the effects of the high-calorie diet in 144 out of 153 significantly altered pathways. These data show that improving general health in mammals using small molecules is an attainable goal, and point to new approaches for treating obesity-related disorders and diseases of ageing.

  • Publication

    The SIRT1 Deacetylase Suppresses Intestinal Tumorigenesis and Colon Cancer Growth

    (Public Library of Science, 2008) Firestein, Ron; Blander, Gil; Michan, Shaday; Oberdoerffer, Philipp; Luikenhuis, Sandra; de Cabo, Rafael; Guarente, Leonard P.; Ogino, Shuji; Campbell, Jennifer; Bhimavarapu, Anupama; Fuchs, Charles; Hahn, William; Sinclair, David

    Numerous longevity genes have been discovered in model organisms and altering their function results in prolonged lifespan. In mammals, some have speculated that any health benefits derived from manipulating these same pathways might be offset by increased cancer risk on account of their propensity to boost cell survival. The Sir2/SIRT1 family of NAD+-dependent deacetylases is proposed to underlie the health benefits of calorie restriction (CR), a diet that broadly suppresses cancer in mammals. Here we show that CR induces a two-fold increase SIRT1 expression in the intestine of rodents and that ectopic induction of SIRT1 in a β-catenin-driven mouse model of colon cancer significantly reduces tumor formation, proliferation, and animal morbidity in the absence of CR. We show that SIRT1 deacetylates β-catenin and suppresses its ability to activate transcription and drive cell proliferation. Moreover, SIRT1 promotes cytoplasmic localization of the otherwise nuclear-localized oncogenic form of β-catenin. Consistent with this, a significant inverse correlation was found between the presence of nuclear SIRT1 and the oncogenic form of β−catenin in 81 human colon tumor specimens analyzed. Taken together, these observations show that SIRT1 suppresses intestinal tumor formation in vivo and raise the prospect that therapies targeting SIRT1 may be of clinical use in β−catenin-driven malignancies.

  • Publication

    Aging: Past, Present and Future

    (Impact Journals LLC, 2009) Blagosklonny, Mikhail V.; Campisi, Judith; Sinclair, David

    In his Foundation series, published in the 1950’s, Isaac Asimov imagined Civilization capable of colonizing the entire Universe. This feat is unlikely to occur. Strikingly, Asimov referred to a 70-old man as an old individual who is unlikely to live much longer. Thus, in literature’s most daring fantasy, the pace of aging could not be slowed. Yet, given the present pace of discovery in the aging field, this feat might become a reality within our life time, with science surpassing science fiction.