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来自突触小泡膜片段的离子通道被重组成脂质双层。

Ion channels from synaptic vesicle membrane fragments reconstituted into lipid bilayers.

作者信息

Kelly M L, Woodbury D J

机构信息

Department of Physiology, Wayne State University Medical School, Detroit, Michigan 48201, USA.

出版信息

Biophys J. 1996 Jun;70(6):2593-9. doi: 10.1016/S0006-3495(96)79830-2.

Abstract

Cholinergic synaptic vesicles were isolated from the electric organ of Torpedo californica. Vesicle membrane proteins were reconstituted into planar lipid bilayers by the nystatin/ergosterol fusion technique. After fusion, a variety of ion channels were observed. Here we identify four channels and describe two of them in detail. The two channels share a conductance of 13 pS. The first is anion selective and strongly voltage dependent, with a 50% open probability at membrane potentials of -15 mV. The second channel is slightly cation selective and voltage independent. It has a high open probability and a subconductance state. A third channel has a conductance of 4-7 pS, similar to the subconductance state of the second channel. This channel is fairly nonselective and has gating kinetics different from those of the cation channel. Finally, an approximately 10-pS, slightly cation selective channel was also observed. The data indicate that there are one or two copies of each of the above channels in every synaptic vesicle, for a total of six channels per vesicle. These observations confirm the existence of ion channels in synaptic vesicle membranes. It is hypothesized that these channels are involved in vesicle recycling and filling.

摘要

从加州电鳐的电器官中分离出胆碱能突触小泡。通过制霉菌素/麦角固醇融合技术将小泡膜蛋白重组到平面脂质双分子层中。融合后,观察到多种离子通道。在此我们鉴定出四种通道,并详细描述其中两种。这两种通道的电导均为13皮安。第一种通道对阴离子具有选择性,且强烈依赖电压,在膜电位为-15毫伏时开放概率为50%。第二种通道对阳离子有轻微选择性且不依赖电压。它具有较高的开放概率和一个亚电导状态。第三种通道的电导为4 - 7皮安,类似于第二种通道的亚电导状态。该通道相当无选择性,其门控动力学与阳离子通道不同。最后,还观察到一个约10皮安、对阳离子有轻微选择性的通道。数据表明每个突触小泡中上述每种通道有一到两个拷贝,每个小泡共有六个通道。这些观察结果证实了突触小泡膜中存在离子通道。据推测,这些通道参与小泡的再循环和填充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e45c/1225240/4e3297ab3f8b/biophysj00048-0131-a.jpg

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