Periodic ER-plasma membrane junctions support long-range Ca<sup>2+</sup> signal integration in dendrites.
basic_science · Level V
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- Record sourced from PubMed, PMID 39708809.
- Also identified by DOI 10.1016/j.cell.2024.11.029.
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Abstract
Neuronal dendrites must relay synaptic inputs over long distances, but the mechanisms by which activity-evoked intracellular signals propagate over macroscopic distances remain unclear. Here, we discovered a system of periodically arranged endoplasmic reticulum-plasma membrane (ER-PM) junctions tiling the plasma membrane of dendrites at ∼1 μm intervals, interlinked by a meshwork of ER tubules patterned in a ladder-like array. Populated with Junctophilin-linked plasma membrane voltage-gated Ca<sup>2+</sup> channels and ER Ca<sup>2+</sup>-release channels (ryanodine receptors), ER-PM junctions are hubs for ER-PM crosstalk, fine-tuning of Ca<sup>2+</sup> homeostasis, and local activation of the Ca<sup>2+</sup>/calmodulin-dependent protein kinase II. Local spine stimulation activates the Ca<sup>2+</sup> modulatory machinery, facilitating signal transmission and ryanodine-receptor-dependent Ca<sup>2+</sup> release at ER-PM junctions over 20 μm away. Thus, interconnected ER-PM junctions support signal propagation and Ca<sup>2+</sup> release from the spine-adjacent ER. The capacity of this subcellular architecture to modify both local and distant membrane-proximal biochemistry potentially contributes to dendritic computations.
Medical subject headings
- Endoplasmic Reticulum
- Dendrites
- Cell Membrane
- Calcium Signaling