Chávez Andrés E, Singer Joshua H, Diamond Jeffrey S
Synaptic Physiology Unit, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892-3701, USA.
Nature. 2006 Oct 12;443(7112):705-8. doi: 10.1038/nature05123. Epub 2006 Oct 1.
Feedback inhibition at reciprocal synapses between A17 amacrine cells and rod bipolar cells (RBCs) shapes light-evoked responses in the retina. Glutamate-mediated excitation of A17 cells elicits GABA (gamma-aminobutyric acid)-mediated inhibitory feedback onto RBCs, but the mechanisms that underlie GABA release from the dendrites of A17 cells are unknown. If, as observed at all other synapses studied, voltage-gated calcium channels (VGCCs) couple membrane depolarization to neurotransmitter release, feedforward excitatory postsynaptic potentials could spread through A17 dendrites to elicit 'surround' feedback inhibitory transmission at neighbouring synapses. Here we show, however, that GABA release from A17 cells in the rat retina does not depend on VGCCs or membrane depolarization. Instead, calcium-permeable AMPA (alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid) receptors (AMPARs), activated by glutamate released from RBCs, provide the calcium influx necessary to trigger GABA release from A17 cells. The AMPAR-mediated calcium signal is amplified by calcium-induced calcium release (CICR) from intracellular calcium stores. These results describe a fast synapse that operates independently of VGCCs and membrane depolarization and reveal a previously unknown form of feedback inhibition within a neural circuit.
A17无长突细胞与视杆双极细胞(RBCs)之间相互突触处的反馈抑制作用塑造了视网膜中的光诱发反应。谷氨酸介导的A17细胞兴奋会引发GABA(γ-氨基丁酸)介导的对RBCs的抑制性反馈,但A17细胞树突释放GABA的机制尚不清楚。如果像在所有其他研究过的突触中观察到的那样,电压门控钙通道(VGCCs)将膜去极化与神经递质释放相偶联,那么前馈兴奋性突触后电位可能会通过A17树突传播,从而在相邻突触处引发“周围”反馈抑制性传递。然而,我们在此表明,大鼠视网膜中A17细胞释放GABA并不依赖于VGCCs或膜去极化。相反,由RBCs释放的谷氨酸激活的钙通透AMPA(α-氨基-3-羟基-5-甲基-4-异恶唑丙酸)受体(AMPARs)提供了触发A17细胞释放GABA所需的钙内流。AMPAR介导的钙信号通过细胞内钙库的钙诱导钙释放(CICR)得以放大。这些结果描述了一种独立于VGCCs和膜去极化运作的快速突触,并揭示了神经回路中一种此前未知的反馈抑制形式。