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Colocalization of ion channels involved in frequency selectivity and synaptic transmission at presynaptic active zones of hair cells

机译:在毛细胞的突触前活性区中涉及频率选择性和突触传递的离子通道共定位

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摘要

Calcium ions serve as intracellular messengers in 2 activities of hair cells: in conjunction with Ca2(+)-activated K+ channels, they produce the electrical resonance that tunes each cell to a specific frequency of stimulation, and they trigger the release of a chemical synaptic transmitter. Our experiments indicate that both of these functions are conducted within a region that extends a few hundred nanometers around each presynaptic active zone. In focal electrical recordings from the plasma membranes of isolated anuran hair cells, we found nearly all of a cell's Ca2+ channels and Ca2(+)-activated K+ channels clumped at a fixed ratio in an average of 20 clusters on the basolateral membrane surface. Because serial-section electron microscopy indicated that each hair cell has approximately 19 afferent synaptic contacts with a similar distribution upon its basolateral surface, we conclude that the channel clusters coincide with synaptic active zones. Ensemble-variance analysis of current fluctuations indicated that each cell has a total of approximately 1800 Ca2+ channels and approximately 700 Ca2(+)- activated K+ channels; if these are uniformly divided, we estimate that each channel cluster contains approximately 90 Ca2+ and approximately 40 Ca2(+)-activated K+ channels. Freeze-fracture electron microscopy demonstrated an average of 133 large intramembrane particles in the presynaptic membrane at each active zone, an observation that suggests that the particles are the clustered channels. We used the K+ channel's sensitivity to intracellular Ca2+ to assay the concentration of free Ca2+ in the presynaptic cytoplasm, which we found to vary between 10 microM and 1 mM over the physiological range of membrane potentials. The inferred concentrations agreed with the values predicted for free diffusion of Ca2+ away from Ca2+ channels scattered randomly within a 300-nm-diameter synaptic active zone. The close association among Ca2+ channels, Ca2(+)-activated K+ channels, and synaptic active zones is necessary both for the rapid activation of K+ currents required in electrical resonance and for the transmission at afferent synapses of information about the phases of high-frequency stimuli.
机译:钙离子在毛细胞的2种活动中充当细胞内信使:与Ca2(+)激活的K +通道结合,它们产生将每个细胞调节至特定刺激频率的电共振,并触发化学突触的释放发射机。我们的实验表明,这两种功能均在围绕每个突触前活性区延伸数百纳米的区域内进行。在离体的无色毛细胞的质膜的聚焦电记录中,我们发现几乎所有细胞的Ca2 +通道和Ca2(+)激活的K +通道均以固定比例聚集在基底外侧膜表面上,平均聚集20个簇。因为串行截面电子显微镜表明,每个毛细胞在其基底外侧表面上具有大约19个传入突触接触,并具有类似的分布,所以我们得出结论,通道簇与突触活性区一致。电流波动的集合方差分析表明,每个单元格共有大约1800个Ca2 +通道和大约700个Ca2(+)-激活的K +通道;如果将它们均匀地划分,我们估计每个通道簇包含大约90个Ca2 +和大约40个Ca2(+)激活的K +通道。冷冻断裂电子显微镜显示每个活动区的突触前膜中平均有133个大的膜内颗粒,这一观察表明该颗粒是簇状通道。我们使用K +通道对细胞内Ca2 +的敏感性来分析突触前细胞质中游离Ca2 +的浓度,我们发现其在膜电位的生理范围内介于10 microM和1 mM之间。推断的浓度与预测的Ca2 +从散布在直径300 nm的突触活性区域内的Ca2 +通道自由扩散的预测值一致。 Ca2 +通道,Ca2(+)激活的K +通道和突触活动区之间的紧密联系对于快速激活共振所需的K +电流以及在传入突触中传输有关高频相位的信息都是必需的刺激。

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