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Ion channels from synaptic vesicle membranes studied by patch clamping and incorporation into planar lipid bilayers.

机译:通过膜片钳和掺入平面脂质双层研究突触小泡膜的离子通道。

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摘要

Synaptic vesicles contain ion channels that may aid in neurotransmitter release or the life cycle of the vesicle. Synaptic vesicles are recycled after fusion with the presynaptic membrane, so pathways are required for acquiring acetylcholine, ATP, and maintaining osmotic stability. The concentration of acetylcholine and ATP inside the vesicle has been debated. Data is presented that shows that the difference in reported values may be due to different purification methods.;Synaptic vesicles from Torpedo californica are quite small (;Five distinct channel types were discovered using joined vesicles fused into planer lipid bilayers: Channels +3, ;Patching of pure synaptic vesicles resulted in the observation of the multiple conducting anion channel and a second channel. This second channel may represent a subconductance state of one of the joined vesicle anion channels, a different channel, or even an altered state of a transporter.;The proton pump inhibitor, DCCD, the acetylcholine transport blocker, vesimacol, and ATP were used to determine possible roles for these channels. DCCD appears to activate the anion channel both in joined vesicles and synaptic vesicles. ATP (1 mM) appears to activate the channel in synaptic vesicles. However, in joined vesicles in the presence of Channel +3, ATP is inhibiting. It is concluded that the anion channel represents an altered state of the hydrogen pump. The other channels appear to regulate osmotic conditions within the vesicle.
机译:突触小泡包含离子通道,可帮助神经递质释放或小泡的生命周期。突触小泡与突触前膜融合后会被回收,因此需要通路来获得乙酰胆碱,ATP和保持渗透稳定性。囊泡内乙酰胆碱和ATP的浓度已有争议。所提供的数据表明,报告值的差异可能是由于不同的纯化方法造成的。加利福尼亚鱼雷的突触小泡非常小(;使用融合到平面脂质双层中的结合小泡发现了五个不同的通道类型:通道+3 ,;纯突触囊泡的修补导致观察到多个传导性阴离子通道和第二通道,该第二通道可能代表连接的囊泡阴离子通道之一的亚电导状态,不同的通道,甚至是转运蛋白的改变状态。 ;质子泵抑制剂DCCD,乙酰胆碱转运阻滞剂,vesimacol和ATP被用于确定这些通道的可能作用,DCCD似乎激活了连接囊泡和突触囊泡中的阴离子通道,ATP(1 mM)似乎被激活突触小泡中的通道,但是,在存在+3通道的连接小泡中,ATP被抑制。表示氢气泵的状态已更改。其他通道似乎调节囊泡内的渗透条件。

著录项

  • 作者

    Kelly, Marie Lynne.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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