Vesicular Zn(2+) regulates postsynaptic neuronal excitability upon its corelease with glutamate. We previously demonstrated that synaptic Zn(2+) acts via a distinct metabotropic zinc-sensing receptor (mZnR) in neurons to trigger Ca(2+) responses in the hippocampus. Here, we show that physiological activation of mZnR signaling induces enhanced K(+)/Cl(-) cotransporter 2 (KCC2) activity and surface expression. As KCC2 is the major Cl(-) outward transporter in neurons, Zn(2+) also triggers a pronounced hyperpolarizing shift in the GABA(A) reversal potential. Mossy fiber stimulation-dependent upregulation of KCC2 activity is eliminated in slices from Zn(2+) transporter 3-deficient animals, which lack synaptic Zn(2+). Importantly, activity-dependent ZnR signaling and subsequent enhancement of KCC2 activity are also absent in slices from mice lacking the G-protein-coupled receptor GPR39, identifying this protein as the functional neuronal mZnR. Our work elucidates a fundamentally important role for synaptically released Zn(2+) acting as a neurotransmitter signal via activation of a mZnR to increase Cl(-) transport, thereby enhancing inhibitory tone in postsynaptic cells.
Upregulation of KCC2 activity by zinc-mediated neurotransmission via the mZnR/GPR39 receptor.
锌通过 mZnR/GPR39 受体介导的神经传递上调 KCC2 活性
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作者:Chorin Ehud, Vinograd Ofir, Fleidervish Ilya, Gilad David, Herrmann Sharon, Sekler Israel, Aizenman Elias, Hershfinkel Michal
| 期刊: | Journal of Neuroscience | 影响因子: | 4.000 |
| 时间: | 2011 | 起止号: | 2011 Sep 7; 31(36):12916-26 |
| doi: | 10.1523/JNEUROSCI.2205-11.2011 | 研究方向: | 神经科学 |
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