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Gille, B.

Publications and source records attributed to Gille, B..

2 recordsLinked to original sources

Sodium butyrate is incorporated into central metabolism in fly head while inducing oxygen consumption increase

Butyrate has been proposed as a drug therapy by acting as a KDAC inhibitor and elevating protein acetylation, in particular on histones. Nonetheless, recent studies suggest that tissues such as the gut can utilize butyrate as a metabolite. We have previously shown that the addition of butyrate induces a rapid increase of oxygen consumption in whole Drosophila melanogaster heads. Here we show that while head oxygen consumption is increased by the addition of butyrate, no apparent changes are observed on the proteome and acetylome. Instead, we show that butyrate is metabolized and incorporated into the tricarboxylic acid cycle (TCA) cycle. Collectivity our data supports the notion that the therapeutic benefits of acute butyrate treatment may be also mediated by improving metabolic rates, rather than solely targeting the epigenome or acetylome.

biochemistry↗

Longevity interventions in Titan mice attenuate frailty and senescence accumulation

Wild-type murine models for aging research have lifespans of several years, which results in long experimental duration and late output. Here we explore the short-lived non-inbred Titan mouse as a mouse model to test longevity interventions. We show that Titan mice exhibit increased frailty and cellular senescence at an early age. Dietary intervention attenuates the frailty progression of Titan mice. Additionally, cyclic administration of the senolytic drug Navitoclax at early age increases the lifespan and reduces cellular senescence. Our data suggests that Titan mice can serve as a cost-effective and timely model for longevity interventions in mammals.

systems biology↗