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The Orai3 channel and AHNAK2 scaffold protein promote the activation of primary human muscle stem cells in vitro

A. Tollance, M. Fourgeaud, S. Koenig, M. Frieden

Preprint

In the authors' words

Skeletal muscle is a dynamic tissue able to regenerate in response to injury. This regeneration relies primarily on the activation of precursor cells, known as muscle stem cells (MuSC). Upon activation, skeletal MuSC re-enter the cell cycle and proliferate as myoblasts, which subsequently either differentiate and fuse to form new fibers or return to quiescence to maintain long-term regenerative capacity. From primary human myoblasts, we generated reserve cells (RCs), quiescent cells similar to MuSC, and investigated their activation after stimulation with a growth medium containing serum. Here, we show that Orai3 calcium channel is primarily expressed in RC, where it promotes RC activation in a calcium-independent manner. We demonstrate that Orai3 does not contribute to store-operated calcium entry (SOCE) or calcium response induced by serum stimulation in RC cells, supporting the hypothesis that Orai3 plays a unique role in RC, distinct from its calcium channel activity. Using a protein proximity assay (BioID), we identified the large scaffold protein AHNAK2 as a potential partner of Orai3. AHNAK2 is expressed at high level in myotubes, and has a similar effect on RC activation than Orai3. Both Orai3 and AHNAK2 are necessary for proper myoblast differentiation and RC activation, while acting through different signaling pathways. Specifically, we show that Orai3 directly influences the RC fate, whereas AHNAK2 facilitates RC activation via signals derived from myotubes. These findings provide new insights into the molecular mechanisms underlying the activation and quiescence of human MuSC.

Main resultThe abstract does not state a limitation.

Appeared: Friday, September 25. bioRxiv. Preprint, not yet peer-reviewed.

DOI: 10.64898/2026.09.23.753807