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Publication : Double-Nanodomain Coupling of Calcium Channels, Ryanodine Receptors, and BK Channels Controls the Generation of Burst Firing.

First Author  Irie T Year  2017
Journal  Neuron Volume  96
Issue  4 Pages  856-870.e4
PubMed ID  29144974 Mgi Jnum  J:253241
Mgi Id  MGI:6109095 Doi  10.1016/j.neuron.2017.10.014
Citation  Irie T, et al. (2017) Double-Nanodomain Coupling of Calcium Channels, Ryanodine Receptors, and BK Channels Controls the Generation of Burst Firing. Neuron 96(4):856-870.e4
abstractText  Action potentials clustered into high-frequency bursts play distinct roles in neural computations. However, little is known about ionic currents that control the duration and probability of these bursts. We found that, in cartwheel inhibitory interneurons of the dorsal cochlear nucleus, the likelihood of bursts and the interval between their spikelets were controlled by Ca(2+) acting across two nanodomains, one between plasma membrane P/Q Ca(2+) channels and endoplasmic reticulum (ER) ryanodine receptors and another between ryanodine receptors and large-conductance, voltage- and Ca(2+)-activated K(+) (BK) channels. Each spike triggered Ca(2+)-induced Ca(2+) release (CICR) from the ER immediately beneath somatic, but not axonal or dendritic, plasma membrane. Moreover, immunolabeling demonstrated close apposition of ryanodine receptors and BK channels. Double-nanodomain coupling between somatic plasma membrane and hypolemmal ER cisterns provides a unique mechanism for rapid control of action potentials on the millisecond timescale.
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