Accumulation of F-actin drives brain aging and limits healthspan in Drosophila
Edward T. Schmid,
Joseph M. Schinaman,
Naomi Liu-Abramowicz
et al.
Abstract:The actin cytoskeleton is a key determinant of cell structure and homeostasis. However, possible tissue-specific changes to actin dynamics during aging, notably brain aging, are not understood. Here, we show that there is an age-related increase in filamentous actin (F-actin) in Drosophila brains, which is counteracted by prolongevity interventions. Critically, decreasing F-actin levels in aging neurons prevents age-onset cognitive decline and extends organismal healthspan. Mechanistically, we show that autoph… Show more
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