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LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons

Individual synapses vary significantly in their neurotransmitter release properties, which underlie complex information processing in neural circuits. Presynaptic Ca(2+) homeostasis plays a critical role in specifying neurotransmitter release properties, but the mechanisms regulating synapse-specifi...

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Autores principales: Kwon, Seok-Kyu, Sando, Richard, Lewis, Tommy L., Hirabayashi, Yusuke, Maximov, Anton, Polleux, Franck
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4948842/
https://www.ncbi.nlm.nih.gov/pubmed/27429220
http://dx.doi.org/10.1371/journal.pbio.1002516
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author Kwon, Seok-Kyu
Sando, Richard
Lewis, Tommy L.
Hirabayashi, Yusuke
Maximov, Anton
Polleux, Franck
author_facet Kwon, Seok-Kyu
Sando, Richard
Lewis, Tommy L.
Hirabayashi, Yusuke
Maximov, Anton
Polleux, Franck
author_sort Kwon, Seok-Kyu
collection PubMed
description Individual synapses vary significantly in their neurotransmitter release properties, which underlie complex information processing in neural circuits. Presynaptic Ca(2+) homeostasis plays a critical role in specifying neurotransmitter release properties, but the mechanisms regulating synapse-specific Ca(2+) homeostasis in the mammalian brain are still poorly understood. Using electrophysiology and genetically encoded Ca(2+) sensors targeted to the mitochondrial matrix or to presynaptic boutons of cortical pyramidal neurons, we demonstrate that the presence or absence of mitochondria at presynaptic boutons dictates neurotransmitter release properties through Mitochondrial Calcium Uniporter (MCU)-dependent Ca(2+) clearance. We demonstrate that the serine/threonine kinase LKB1 regulates MCU expression, mitochondria-dependent Ca(2+) clearance, and thereby, presynaptic release properties. Re-establishment of MCU-dependent mitochondrial Ca(2+) uptake at glutamatergic synapses rescues the altered neurotransmitter release properties characterizing LKB1-null cortical axons. Our results provide novel insights into the cellular and molecular mechanisms whereby mitochondria control neurotransmitter release properties in a bouton-specific way through presynaptic Ca(2+) clearance.
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spelling pubmed-49488422016-08-01 LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons Kwon, Seok-Kyu Sando, Richard Lewis, Tommy L. Hirabayashi, Yusuke Maximov, Anton Polleux, Franck PLoS Biol Research Article Individual synapses vary significantly in their neurotransmitter release properties, which underlie complex information processing in neural circuits. Presynaptic Ca(2+) homeostasis plays a critical role in specifying neurotransmitter release properties, but the mechanisms regulating synapse-specific Ca(2+) homeostasis in the mammalian brain are still poorly understood. Using electrophysiology and genetically encoded Ca(2+) sensors targeted to the mitochondrial matrix or to presynaptic boutons of cortical pyramidal neurons, we demonstrate that the presence or absence of mitochondria at presynaptic boutons dictates neurotransmitter release properties through Mitochondrial Calcium Uniporter (MCU)-dependent Ca(2+) clearance. We demonstrate that the serine/threonine kinase LKB1 regulates MCU expression, mitochondria-dependent Ca(2+) clearance, and thereby, presynaptic release properties. Re-establishment of MCU-dependent mitochondrial Ca(2+) uptake at glutamatergic synapses rescues the altered neurotransmitter release properties characterizing LKB1-null cortical axons. Our results provide novel insights into the cellular and molecular mechanisms whereby mitochondria control neurotransmitter release properties in a bouton-specific way through presynaptic Ca(2+) clearance. Public Library of Science 2016-07-18 /pmc/articles/PMC4948842/ /pubmed/27429220 http://dx.doi.org/10.1371/journal.pbio.1002516 Text en © 2016 Kwon et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kwon, Seok-Kyu
Sando, Richard
Lewis, Tommy L.
Hirabayashi, Yusuke
Maximov, Anton
Polleux, Franck
LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title_full LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title_fullStr LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title_full_unstemmed LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title_short LKB1 Regulates Mitochondria-Dependent Presynaptic Calcium Clearance and Neurotransmitter Release Properties at Excitatory Synapses along Cortical Axons
title_sort lkb1 regulates mitochondria-dependent presynaptic calcium clearance and neurotransmitter release properties at excitatory synapses along cortical axons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4948842/
https://www.ncbi.nlm.nih.gov/pubmed/27429220
http://dx.doi.org/10.1371/journal.pbio.1002516
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