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Chloride potassium symporter 5
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Chloride potassium symporter 5 : ウィキペディア英語版
Chloride potassium symporter 5

Potassium-chloride transporter member 5 (aka: KCC2 and SLC12A5) is a neuron-specific chloride potassium symporter responsible for establishing the chloride ion gradient in neurons through the maintenance of low intracellular chloride concentrations.〔(【引用サイトリンク】 url = http://www.ncbi.nlm.nih.gov/sites/entrez?Db=gene&Cmd=ShowDetailView&TermToSearch=57468 )〕 It is a critical mediator of synaptic inhibition, cellular protection against excitotoxicity and may also act as a modulator of neuroplasticity. Potassium-chloride transporter member 5 is also known by the names: KCC2 (potassium chloride cotransporter 2) for its ionic substrates, and SLC12A5 for its genetic origin from the ''SLC12A5'' gene in humans.〔
Animals with reduced expression of this transporter exhibit severe motor deficits, epileptiform activity, and spasticity.〔 KCC2 knockout animals, in which KCC2 is completely absent, die postnatally due to respiratory failure.〔
==Location==

KCC2 is a neuron-specific membrane protein expressed throughout the central nervous system, including the hippocampus, hypothalamus, brainstem, and motoneurons of the ventral spinal cord.〔
At the subcellular level, KCC2 has been found in membranes of the somata and dendrites of neurons,〔 with no evidence of expression on axons.〔 KCC2 has also been shown to colocalize with GABAA receptors, which serve as ligand-gated ion channels to allow chloride ion movement across the cell membrane. Under normal conditions, the opening of GABAA receptors permits the hyperpolarizing influx of chloride ions to inhibit postsynaptic neurons from firing.〔
Counterintuitively, KCC2 has also been shown to colocalize at excitatory synapses.〔 One suggested explanation for such colocalization is a potential protective role of KCC2 against excitotoxicity.〔〔 Ion influx due to the excitatory synaptic stimulation of ion channels in the neuronal membrane causes osmotic swelling of cells as water is drawn in alongside the ions. KCC2 may help to eliminate excess ions from the cell in order to re-establish osmotic homeostasis.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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