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Study identifies key factor in DNA damage associated with aging
In a recent study, Rochester scientists made two important contributions to DNA damage research. First, though scientists could previously point to an association between DNA damage and aging, the Rochester group has demonstrated a causal relationship between reduced DNA damage and extended lifespan. Second, the researchers have identified a cellular factor—an enzyme called topoisomerase 2, or Top2, implicated in DNA damage—that can be targeted to reduce that damage. The findings are published...
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| Categories: | Tags: Aging, Arts and Sciences, David Goldfarb, Department of Biology, DNA, research finding, replicative lifespan, aging, topoisomerase 2 poison, DNA damage, antagonistic pleiotropy | Comments: (0) | View Count: (903)
Deleting genes could boost lifespan by 60 per cent, say scientists
Scientists have discovered more than 200 genes linked to ageing and have found switching them off extends life Switching off parts of the genetic code could help people live longer, scientists believe
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| Categories: | Tags: dramatically increase lifespan, ageing, LOS1 | Comments: (0) | View Count: (1534)
Preventing age-related decline of gut compartmentalization limits microbiota dysbiosis and extends lifespan
Summary Compartmentalization of the gastrointestinal (GI) tract of metazoans is critical for health. GI compartments contain specific microbiota, and microbiota dysbiosis is associated with intestinal dysfunction. Dysbiosis develops in aging intestines, yet how this relates to changes in GI compartmentalization remains unclear. The Drosophila GI tract is an accessible model to address this question. Here we show that the stomach-like copper cell region (CCR) in the middle midgut controls distri...
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| Categories: | Tags: age-related, compartmentalization, microbiota dysbiosis, lifespan | Comments: (0) | View Count: (1491)