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首页> 外文期刊>The Journal of Physiology >Single-channel properties of glycine receptors of juvenile rat spinal motoneurones in vitro.
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Single-channel properties of glycine receptors of juvenile rat spinal motoneurones in vitro.

机译:幼年大鼠脊髓运动神经元甘氨酸受体的单通道特性。

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摘要

An essential step in understanding fast synaptic transmission is to establish the activation mechanism of synaptic receptors. The purpose of this work was to extend our detailed single-channel kinetic characterization of alpha1beta glycine channels from rat recombinant receptors to native channels from juvenile (postnatal day 12-16) rat spinal cord slices. In cell-attached patches from ventral horn neurones, 1 mM glycine elicited clusters of channel openings to a single conductance level (41 +/- 1 pS, n = 12). This is similar to that of recombinant heteromers. However, fewer than 1 in 100 cell-attached patches from spinal neurones contained glycine channels. Outside-out patches gave a much higher success rate, but glycine channels recorded in this configuration appeared different, in that clusters opened to three conductance levels (28 +/- 2, 38 +/- 1 and 46 +/- 1 pS, n = 7, one level per cluster, all levels being detected in each patch). Furthermore, open period properties were different for the different conductances. As a consequence of this, the only recordings suitable for kinetic analysis were the cell-attached ones. Low channel density precluded recording at glycine concentrations other than 1 mM, but the 1 mm data allowed us to estimate the fully bound gating constants by global model fitting of the 'flip' mechanism of Burzomato and co-workers. Our results suggest that glycine receptors on ventral horn neurones in the juvenile rat are heteromers and have fast gating, similar to that of recombinant alpha1beta receptors.
机译:理解快速突触传递的重要步骤是建立突触受体的激活机制。这项工作的目的是将我们详细的大鼠重组受体的alpha1β甘氨酸通道的单通道动力学表征扩展到来自幼年(出生后第12-16天)大鼠脊髓切片的天然通道。在来自腹角神经元的细胞贴片中,1 mM甘氨酸引发通道开口簇至单个电导水平(41 +/- 1 pS,n = 12)。这类似于重组杂聚体。但是,来自脊髓神经元的100个附着细胞的膜片中只有不到1个包含甘氨酸通道。从外到外的补丁提供了更高的成功率,但是以这种配置记录的甘氨酸通道似乎有所不同,因为簇打开到三个电导水平(28 +/- 2、38 +/- 1和46 +/- 1 pS,n = 7,每个群集一个级别,每个补丁中检测到所有级别)。此外,不同电导的开放期特性也不同。因此,适用于动力学分析的唯一记录是细胞附着的记录。低通道密度排除了在1 mM以外的甘氨酸浓度下的记录,但1 mm的数据使我们能够通过Burzomato及其同事的“翻转”机制的全局模型拟合来估计完全束缚的门控常数。我们的结果表明,幼年大鼠腹角神经元上的甘氨酸受体是异源单体,具有快速门控,类似于重组α1β受体。

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