The Journal of Comparative Neurology · 2009 · 69 citations · 58 references
Bk ChannelsNeurotransmissionPeripheral NerveHypolemmal MicrodomainsCellular NeurobiologyCellular PhysiologySocial SciencesHyperpolarization (Biology)Membrane TransportPotassium ChannelsPurkinje CellBiophysicsCalcium-activated Potassium ChannelsCell PhysiologySubsurface CisternsMolecular PhysiologyIon ChannelsMembrane BiologyMembrane SystemNervous SystemMembrane PermeationCell BiologyPotassium HomeostasisSynaptic PlasticityMembrane BiophysicsNeurophysiologyNeuroanatomyPhysiologyElectrophysiologyNeuroscienceCentral Nervous SystemMedicine
Calcium-activated potassium channels have been shown to be critically involved in neuronal function, but an elucidation of their detailed roles awaits identification of the microdomains where they are located. This study was undertaken to unravel the precise subcellular distribution of the large-conductance calcium-activated potassium channels (called BK, KCa1.1, or Slo1) in the somatodendritic compartment of cerebellar Purkinje cells by means of postembedding immunogold cytochemistry and SDS-digested freeze-fracture replica labeling (SDS-FRL). We found BK channels to be unevenly distributed over the Purkinje cell plasma membrane. At distal dendritic compartments, BK channels were scattered over the plasma membrane of dendritic shafts and spines but absent from postsynaptic densities. At the soma and proximal dendrites, BK channels formed two distinct pools. One pool was scattered over the plasma membrane, whereas the other pool was clustered in plasma membrane domains overlying subsurface cisterns. The labeling density ratio of clustered to scattered channels was about 60:1, established in SDS-FRL. Subsurface cisterns, also called hypolemmal cisterns, are subcompartments of the endoplasmic reticulum likely representing calciosomes that unload and refill Ca2+ independently. Purkinje cell subsurface cisterns are enriched in inositol 1,4,5-triphosphate receptors that mediate the effects of several neurotransmitters, hormones, and growth factors by releasing Ca2+ into the cytosol, generating local Ca2+ sparks. Such increases in cytosolic [Ca2+] may be sufficient for BK channel activation. Clustered BK channels in the plasma membrane may thus participate in building a functional unit (plasmerosome) with the underlying calciosome that contributes significantly to local signaling in Purkinje cells.
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P-type calcium channels blocked by the spider toxin ω-Aga-IVA
Isabelle M. Mintz, Virginia J. Venema, Kristine M. Swiderek et al. · Nature · 1992 · 876 citations
Motor deficit and impairment of synaptic plasticity in mice lacking mGluR1
François Conquet, Zafar I. Bashir, Ceri H. Davies et al. · Nature · 1994 · 743 citations · Full text
Synaptic Plasticity, Neuroanatomy, Synaptic Transmission +11