Inositol trisphosphate and ryanodine receptors share a common functional Ca2+ pool in cerebellar Purkinje neurons.
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PI3 kinase enhancer-Homer complex couples mGluRI to PI3 kinase, preventing neuronal apoptosisRegulation of Ca2+-release-activated Ca2+ current (Icrac) by ryanodine receptors in inositol 1,4,5-trisphosphate-receptor-deficient DT40 cellsSynaptic activation and membrane potential changes modulate the frequency of spontaneous elementary Ca2+ release events in the dendrites of pyramidal neuronsInduction of long-term depression and rebound potentiation by inositol trisphosphate in cerebellar Purkinje neurons.Characterization of inositol-1,4,5-trisphosphate-gated channels in the plasma membrane of rat olfactory neurons.Computational analysis of calcium signaling and membrane electrophysiology in cerebellar Purkinje neurons associated with ataxia.Two intracellular pathways mediate metabotropic glutamate receptor-induced Ca2+ mobilization in dopamine neurons.Parasagittally aligned, mGluR1-dependent patches are evoked at long latencies by parallel fiber stimulation in the mouse cerebellar cortex in vivo.Impaired calcium release in cerebellar Purkinje neurons maintained in culture.Multiple modes of calcium-induced calcium release in sympathetic neurons I: attenuation of endoplasmic reticulum Ca2+ accumulation at low [Ca2+](i) during weak depolarizationMultiple modes of calcium-induced calcium release in sympathetic neurons II: a [Ca2+](i)- and location-dependent transition from endoplasmic reticulum Ca accumulation to net Ca release.Deranged calcium signaling and neurodegeneration in spinocerebellar ataxia type 2.Functional integration of calcium regulatory mechanisms at Purkinje neuron synapses.Ca2+ channel-sarcoplasmic reticulum coupling: a mechanism of arterial myocyte contraction without Ca2+ influx.Ryanodine-receptor-driven intracellular calcium dynamics underlying spatial association of synaptic plasticity.Functionally separate intracellular Ca2+ stores in smooth muscle.Distinct contributions of small and large conductance Ca2+-activated K+ channels to rat Purkinje neuron function.Neuronal endoplasmic reticulum acts as a single functional Ca2+ store shared by ryanodine and inositol-1,4,5-trisphosphate receptors as revealed by intra-ER [Ca2+] recordings in single rat sensory neurones.Localized IP3-evoked Ca2+ release activates a K+ current in primary vagal sensory neurons.A new class of synaptic response involving calcium release in dendritic spines.Enhanced desensitization followed by unusual resensitization in GABAA receptors in phospholipase C-related catalytically inactive protein-1/2 double-knockout mice.
P2860
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P2860
Inositol trisphosphate and ryanodine receptors share a common functional Ca2+ pool in cerebellar Purkinje neurons.
description
1997 nî lūn-bûn
@nan
1997年の論文
@ja
1997年論文
@yue
1997年論文
@zh-hant
1997年論文
@zh-hk
1997年論文
@zh-mo
1997年論文
@zh-tw
1997年论文
@wuu
1997年论文
@zh
1997年论文
@zh-cn
name
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@en
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@nl
type
label
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@en
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@nl
prefLabel
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@en
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@nl
P2860
P1433
P1476
Inositol trisphosphate and rya ...... n cerebellar Purkinje neurons.
@en
P2093
C M Armstrong
K Khodakhah
P2860
P304
P356
10.1016/S0006-3495(97)78359-0
P407
P577
1997-12-01T00:00:00Z