Differential functional role of Orai1 variants in constitutive Ca entry and calcification in luminal breast cancer cells.

J Biol Chem

Department of Physiology (Cellular Physiology Research Group), Institute of Molecular Pathology Biomarkers (IMPB), University of Extremadura, Caceres, Spain. Electronic address:

Published: October 2024

AI Article Synopsis

  • Resting cytosolic Ca concentration is crucial for regulating cellular functions, with luminal breast cancer cells relying on Orai1 and SPCA2 to sustain Ca entry, leading to mammary microcalcifications as a prognostic marker.
  • Two isoforms of Orai1 exist, with only the full-length Orai1α capable of supporting SPCA2-mediated Ca entry in Orai1-KO MCF7 cells, indicating its specific importance in these processes.
  • The N-terminal 38 amino acids of Orai1α are key for its interaction with SPCA2, and Orai1α's ability to restore microcalcification formation suggests it could be a potential target for preventing complications in luminal breast cancer.

Article Abstract

Resting cytosolic Ca concentration is tightly regulated to fine-tune Ca-dependent cellular functions. Luminal breast cancer cells exhibit constitutive Ca entry mediated by Orai1 and the secretory pathway Ca-ATPase, SPCA2, which result in mammary microcalcifications that constitute a prognostic marker of mammary lesions. Two Orai1 isoforms have been identified, the full-length Orai1α, consisting of 301 amino acids, and the short variant, Orai1β, lacking the 63 or 70 N-terminal amino acids comprising residues involved in channel inactivation and binding sites with Orai1 partners. We show that only the mammalian-specific Orai1α rescues SPCA2-dependent constitutive Ca entry in Orai1-KO MCF7 cells, a widely used luminal breast cancer cell line. FRET analysis and immunoprecipitation revealed that Orai1α shows a greater ability to interact with SPCA2 than Orai1β. Deletion of the first 38 amino acids in Orai1α reduced the interaction with SPCA2 to a similar extent as Orai1β, thus suggesting that the N-terminal 38 amino acids play a relevant role in Orai1α-SPCA2 interaction. Finally, Orai1α, but not Orai1β, rescue the ability of Orai1-deficient cells to form in vitro microcalcifications. These findings provide compelling evidence for a functional role of Orai1α in constitutive Ca entry in MCF7 cells, which might be a target to prevent the development of mammary microcalcifications in luminal breast cancer.

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Source
http://dx.doi.org/10.1016/j.jbc.2024.107786DOI Listing

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