Restoring calcium crosstalk between ER and mitochondria promotes intestinal stem cell rejuvenation through autophagy in aged Drosophila.

Zhang, Yao; Ma, Peng; Wang, Saifei; Chen, Shuxin; Deng, Hansong · Nat Commun · 2025

basic_science · Level V

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Abstract

Breakdown of calcium network is closely associated with cellular aging. Previously, we found that cytosolic calcium (CytoCa<sup>2+</sup>) levels were elevated while mitochondrial calcium (MitoCa<sup>2+</sup>) levels were decreased and associated with metabolic shift in aged intestinal stem cells (ISCs) of Drosophila. How MitoCa<sup>2+</sup> was decoupled from the intracellular calcium network and whether the reduction of MitoCa<sup>2+</sup> drives ISC aging, however, remains unresolved. Here, we show that genetically restoring MitoCa<sup>2+</sup> can reverse ISC functional decline and promote intestinal homeostasis by activating autophagy in aged flies. Further studies indicate that MitoCa<sup>2+</sup> and Mitochondria-ER contacts (MERCs) form a positive feedback loop via IP3R to regulate autophagy independent of AMPK. Breakdown of this loop is responsible for MitoCa<sup>2+</sup> reduction and ISC dysfunction in aged flies. Our results identify a regulatory module for autophagy initiation involving calcium crosstalk between the ER and mitochondria, providing a strategy to treat aging and age-related diseases.

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