TMEM65-dependent Ca2+ extrusion safeguards mitochondrial homeostasis.

Vetralla, Massimo; Wischhof, Lena; Kahsay, Asrat; Cadenelli, Vanessa; Scifo, Enzo; Xie, Beijia; Sbrissa, Miriana; Habert, Maëlle Sandhira et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

The bidirectional transport of Ca<sup>2+</sup> into and out of mitochondria regulates metabolism, signaling, and cell fate. While influx is mediated by the Mitochondrial Calcium Uniporter (MCU) complex, efflux mechanisms are more diversified, involving Na⁺ or H⁺ exchange pathways. We here demonstrate that TMEM65 is a fundamental component of the Ca<sup>2+</sup> efflux machinery of mitochondria. Its overexpression specifically enhances Na⁺- and Li⁺-dependent mitochondrial Ca²⁺ extrusion. This effect is inhibited by CGP-37157 and does not depends on NCLX, currently considered the bona fide mitochondrial Na<sup>+</sup>/Ca<sup>2+</sup> exchanger. Its downregulation chronically elevates basal [Ca²⁺]<sub>mt</sub> and impairs efflux upon stimulation. In Caenorhabditis elegans, deletion of TMEM65 homologs compromises embryonic development under mild thermal stress, causing necrotic lesions that are suppressed by genetic inhibition of MCU-1. These findings highlight a molecular component that may be relevant in pathological settings in which excessive mitochondrial Ca<sup>2+</sup> accumulation critically contribute to degenerative pathways.

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