Supra-Molecular Assemblies of ORAI1 at Rest Precede Local Accumulation into Puncta after Activation

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Date
2021
Volume
22
Issue
2
Journal
International Journal of Molecular Sciences
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Publisher
Basel : Molecular Diversity Preservation International
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Abstract

The Ca2+ selective channel ORAI1 and endoplasmic reticulum (ER)-resident STIM proteins form the core of the channel complex mediating store operated Ca2+ entry (SOCE). Using liquid phase electron microscopy (LPEM), the distribution of ORAI1 proteins was examined at rest and after SOCE-activation at nanoscale resolution. The analysis of over seven hundred thousand ORAI1 positions revealed a number of ORAI1 channels had formed STIM-independent distinct supra-molecular clusters. Upon SOCE activation and in the presence of STIM proteins, a fraction of ORAI1 assembled in micron-sized two-dimensional structures, such as the known puncta at the ER plasma membrane contact zones, but also in divergent structures such as strands, and ring-like shapes. Our results thus question the hypothesis that stochastically migrating single ORAI1 channels are trapped at regions containing activated STIM, and we propose instead that supra-molecular ORAI1 clusters fulfill an amplifying function for creating dense ORAI1 accumulations upon SOCE-activation.

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Peckys, D. B., Gaa, D., Alansary, D., Niemeyer, B. A., & de Jonge, N. (2021). Supra-Molecular Assemblies of ORAI1 at Rest Precede Local Accumulation into Puncta after Activation (Basel : Molecular Diversity Preservation International). Basel : Molecular Diversity Preservation International. https://doi.org//10.3390/ijms22020799
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CC BY 4.0 Unported