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甘氨酸受体激活是脊髓神经元中受体聚集所必需的。

Glycine-receptor activation is required for receptor clustering in spinal neurons.

作者信息

Kirsch J, Betz H

机构信息

Department of Neurochemistry, Max-Planck-Institute for Brain Research, Frankfurt/Main, Germany.

出版信息

Nature. 1998 Apr 16;392(6677):717-20. doi: 10.1038/33694.

Abstract

The ability of nerve cells to receive up to several thousands of synaptic inputs from other neurons provides the anatomical basis for information processing in the vertebrate brain. The formation of functional synapses involves selective clustering of neurotransmitter receptors at presumptive postsynaptic regions of the neuronal plasma membrane. Receptor-associated proteins are believed to be crucial for this process. In spinal neurons, synaptic targeting of the inhibitory glycine receptor (GlyR) depends on the expression of the anchoring protein gephyrin. Here we show that the competitive GlyR antagonist strychnine and L-type Ca2+-channel blockers inhibit the accumulation of GlyR and gephyrin at postsynaptic membrane areas in cultured rat spinal neurons. Our data are consistent with a model in which GlyR activation that results in Ca2+ influx is required for the clustering of gephyrin and GlyR at developing postsynaptic sites. Similar activity-driven mechanisms may be of general importance in synaptogenesis.

摘要

神经细胞能够接收来自其他神经元的多达数千个突触输入,这为脊椎动物大脑中的信息处理提供了解剖学基础。功能性突触的形成涉及神经递质受体在神经元质膜假定的突触后区域的选择性聚集。据信受体相关蛋白对这一过程至关重要。在脊髓神经元中,抑制性甘氨酸受体(GlyR)的突触靶向取决于锚定蛋白gephyrin的表达。在这里,我们表明竞争性GlyR拮抗剂士的宁和L型钙通道阻滞剂会抑制培养的大鼠脊髓神经元突触后膜区域GlyR和gephyrin的积累。我们的数据与一个模型一致,即在发育中的突触后位点,gephyrin和GlyR的聚集需要GlyR激活导致Ca2+内流。类似的活动驱动机制可能在突触形成中具有普遍重要性。

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