International audienceThe main inhibitory neurotransmitter receptors in the adult central nervous system (CNS) are type A γ-aminobutyric acid receptors (GABA A Rs) and glycine receptors (GlyRs). Synaptic responses mediated by GlyR and GABA A R display a hyperpolarizing shift during development. This shift relies mainly on the developmental up-regulation of the K +-Cl − co-transporter KCC2 responsible for the extrusion of Cl −. In mature neurons, altered KCC2 function-mainly through increased endocytosis-leads to the re-emergence of depolarizing GABAergic and glycinergic signaling, which promotes hyperexcitability and pathological activities. Identifying signaling pathways and molecular partners that control KCC2 surface stability thus repre...
KCC2 is the primary Cl- cotransporter which maintains a low [Cl-]i required for inhibitory neurotran...
International audienceThe K+-Cl- cotransporter KCC2, encoded by the Slc12a5 gene, is a neuron-specif...
In the central nervous system, the polarity of GABAergic synaptic transmission is predominantly dete...
International audienceThe main inhibitory neurotransmitter receptors in the adult central nervous sy...
The K-Cl co-transporter KCC2 plays multiple roles in the physiology of central neurons and alteratio...
KCC2 is the neuron-specific member of the K+-Cl- cotransporter family of proteins, which maintains a...
The K+-Cl- co-transporter KCC2 (SLC12A5) tunes the efficacy of GABAA receptor-mediated transmission ...
La polarité et l'efficacité de la transmission GABAergique dépendent de la concentration intra-neuro...
The mechanisms that regulate the activity of the neuron specific K+Cl- cotransporter (KCC2) remain p...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Dans les neurones matures du système nerveux central, la polarité et l efficacité de la transmission...
SummaryModulation of intracellular chloride concentration ([Cl−]i) plays a fundamental role in cell ...
A balance between excitatory and inhibitory activity is needed to maintain proper brain function. At...
This is the final version of the article. Available from the publisher via the DOI in this record.Th...
KCC2 is the primary Cl- cotransporter which maintains a low [Cl-]i required for inhibitory neurotran...
International audienceThe K+-Cl- cotransporter KCC2, encoded by the Slc12a5 gene, is a neuron-specif...
In the central nervous system, the polarity of GABAergic synaptic transmission is predominantly dete...
International audienceThe main inhibitory neurotransmitter receptors in the adult central nervous sy...
The K-Cl co-transporter KCC2 plays multiple roles in the physiology of central neurons and alteratio...
KCC2 is the neuron-specific member of the K+-Cl- cotransporter family of proteins, which maintains a...
The K+-Cl- co-transporter KCC2 (SLC12A5) tunes the efficacy of GABAA receptor-mediated transmission ...
La polarité et l'efficacité de la transmission GABAergique dépendent de la concentration intra-neuro...
The mechanisms that regulate the activity of the neuron specific K+Cl- cotransporter (KCC2) remain p...
Hyperpolarizing synaptic inhibition through GABAA and glycine receptors depends on the presence of t...
Dans les neurones matures du système nerveux central, la polarité et l efficacité de la transmission...
SummaryModulation of intracellular chloride concentration ([Cl−]i) plays a fundamental role in cell ...
A balance between excitatory and inhibitory activity is needed to maintain proper brain function. At...
This is the final version of the article. Available from the publisher via the DOI in this record.Th...
KCC2 is the primary Cl- cotransporter which maintains a low [Cl-]i required for inhibitory neurotran...
International audienceThe K+-Cl- cotransporter KCC2, encoded by the Slc12a5 gene, is a neuron-specif...
In the central nervous system, the polarity of GABAergic synaptic transmission is predominantly dete...