GABA Itself Promotes the Developmental Switch of Neuronal GABAergic Responses from Excitation to Inhibition

GABA is the main inhibitory neurotransmitter in the adult brain. Early in development, however, GABAergic synaptic transmission is excitatory and can exert widespread trophic effects. During the postnatal period, GABAergic responses undergo a switch from being excitatory to inhibitory. Here, we show...

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Veröffentlicht in:Cell 2001-05, Vol.105 (4), p.521-532
Hauptverfasser: Ganguly, Karunesh, Schinder, Alejandro F., Wong, Scott T., Poo, Mu-ming
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Sprache:eng
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Zusammenfassung:GABA is the main inhibitory neurotransmitter in the adult brain. Early in development, however, GABAergic synaptic transmission is excitatory and can exert widespread trophic effects. During the postnatal period, GABAergic responses undergo a switch from being excitatory to inhibitory. Here, we show that the switch is delayed by chronic blockade of GABA A receptors, and accelerated by increased GABA A receptor activation. In contrast, blockade of glutamatergic transmission or action potentials has no effect. Furthermore, GABAergic activity modulated the mRNA levels of KCC2, a K +-Cl − cotransporter whose expression correlates with the switch. Finally, we report that GABA can alter the properties of depolarization-induced Ca 2+ influx. Thus, GABA acts as a self-limiting trophic factor during neural development.
ISSN:0092-8674
1097-4172
DOI:10.1016/S0092-8674(01)00341-5