A ratiometric ER calcium sensor for quantitative comparisons across cell types and subcellular regions.
| Publication Type | Academic Article |
| Authors | Farrell R, Hennigan S, Bredvik K, Hoppa M, Brown T, Ryan T |
| Journal | J Gen Physiol |
| Volume | 158 |
| Issue | 5 |
| Date Published | 08/19/2026 |
| ISSN | 1540-7748 |
| Keywords | Endoplasmic Reticulum, Calcium, Neurons |
| Abstract | The ER is an important regulator of Ca2+ in cells and dysregulation of ER Ca2+ homeostasis can lead to numerous pathologies. Understanding how various pharmacological and genetic perturbations of ER Ca2+ homeostasis impact cellular physiology would be facilitated by quantitative measurements of ER Ca2+ levels that allow for robust comparisons across conditions. To achieve this, we enhanced our original high dynamic range ER Ca2+ indicator, ER-GCaMP6-150, by fusing it to the HaloTag protein, which when bound to Janelia Fluor (JF) dyes creates a ratiometric ER Ca2+ probe. This probe (ER-Halo-GCaMP6-150) displayed minimal changes to the Ca2+-binding properties compared with our original ER Ca2+ probe as shown through in vitro and in cell Ca2+ calibrations. We describe a method to use this ratiometric probe for quantitative comparisons of ER Ca2+ concentrations and leverage this technique to compare ER Ca2+ levels across cell types and subcellular compartments. Using this approach, we show that the resting concentration of ER Ca2+ in primary dissociated neurons does not differ between excitatory and inhibitory subtypes nor between axonal and somatodendritic compartments. However, resting ER Ca2+ levels in neuronal somas are substantially lower than that measured in embryonic fibroblasts. The ER-Halo-GCaMP6-150 provides a robust tool to directly measure ER Ca2+ levels for studies of ER physiology across cell types and compartments. |
| DOI | 10.1085/jgp.202413564 |
| PubMed ID | 42616015 |