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Prof.
University of Michigan
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Schedule
Sunday, July 19, 2020
4:00 PM Europe/Lisbon
Seminar location
No geocoded details are available for this content yet.
Format
Past Seminar
Recording
Not available
Host
Brain-Body Interactions
Seminar location
No geocoded details are available for this content yet.
Diets rich in sugar, salt, and fat alter taste perception and food intake, leading to obesity and metabolic disorders, but the molecular mechanisms through which this occurs are unknown. Here we show that in response to a high sugar diet, the epigenetic regulator Polycomb Repressive Complex 2.1 (PRC2.1) persistently reprograms the sensory neurons of D. melanogaster flies to reduce sweet sensation and promote obesity. In animals fed high sugar, the binding of PRC2.1 to the chromatin of the sweet gustatory neurons is redistributed to repress a developmental transcriptional network that modulates the responsiveness of these cells to sweet stimuli, reducing sweet sensation. Importantly, half of these transcriptional changes persist despite returning the animals to a control diet, causing a permanent decrease in sweet taste. Our results uncover a new epigenetic mechanism that, in response to the dietary environment, regulates neural plasticity and feeding behavior to promote obesity.
Monica Dus
Prof.
University of Michigan
neuro
neuro
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