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Depressed excitability and ion currents linked to slow exocytotic fusion pore in chromaffin cells of the SOD1(G93A) mouse model of amyotrophic lateral sclerosis
- Source :
- Biblos-e Archivo. Repositorio Institucional de la UAM, instname
- Publication Year :
- 2015
- Publisher :
- American Physiological Society, 2015.
-
Abstract
- Altered synaptic transmission with excess glutamate release has been implicated in the loss of motoneurons occurring in amyotrophic lateral sclerosis (ALS). Hyperexcitability or hypoexcitability of motoneurons from mice carrying the ALS mutation SOD1G93A (mSOD1) has also been reported. Here we have investigated the excitability, the ion currents, and the kinetics of the exocytotic fusion pore in chromaffin cells from postnatal day 90 to postnatal day 130 mSOD1 mice, when motor deficits are already established. With respect to wild-type (WT), mSOD1 chromaffin cells had a decrease in the following parameters: 95% in spontaneous action potentials, 70% in nicotinic current for acetylcholine (ACh), 35% in Na+ current, 40% in Ca2+-dependent K+ current, and 53% in voltage-dependent K+ current. Ca2+ current was increased by 37%, but the ACh-evoked elevation of cytosolic Ca2+ was unchanged. Single exocytotic spike events triggered by ACh had the following differences (mSOD1 vs. WT): 36% lower rise rate, 60% higher decay time, 51% higher half-width, 13% lower amplitude, and 61% higher quantal size. The expression of the α3-subtype of nicotinic receptors and proteins of the exocytotic machinery was unchanged in the brain and adrenal medulla of mSOD1, with respect to WT mice. A slower fusion pore opening, expansion, and closure are likely linked to the pronounced reduction in cell excitability and in the ion currents driving action potentials in mSOD1, compared with WT chromaffin cells.<br />This work was funded by: (1) SAF-2010-21795, MINECO; (2) SAF-2010-792 18837, MINECO; (3) CABICYC, UAM/Bioibérica; (4) Fundación Teófilo 793 Hernando, Madrid, Spain
- Subjects :
- Male
Physiology
Medicina
Action Potentials
Mice, Transgenic
Motor Activity
Receptors, Nicotinic
Neurotransmission
Ion channel currents
Membrane Fusion
Synaptic Transmission
Exocytosis
Catecholamines
Superoxide Dismutase-1
medicine
Animals
Humans
Calcium Signaling
Amyotrophic lateral sclerosis
Motor Neurons
Ion Transport
Superoxide Dismutase
Chemistry
Sodium
Chromaffin cells
Age Factors
Glutamate receptor
Cell Biology
Anatomy
medicine.disease
Fusion pore
Acetylcholine
Disease Models, Animal
Kinetics
Mutation
Potassium
Calcium
Neuroscience
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Biblos-e Archivo. Repositorio Institucional de la UAM, instname
- Accession number :
- edsair.doi.dedup.....73f75e43f5af056f75111a32d7201ce0