Imoto K, Methfessel C, Sakmann B, Mishina M, Mori Y, Konno T, Fukuda K, Kurasaki M, Bujo H, Fujita Y
Nature. 1986;324(6098):670-4. doi: 10.1038/324670a0.
The combination of complementary DNA expression and single-channel current analysis provides a powerful tool for studying the structure-function relationship of the nicotinic acetylcholine receptor (AChR) (refs 1-5). We have previously shown that AChR channels consisting of subunits from different species, expressed in the surface membrane of Xenopus oocytes, can be used to relate functional properties to individual subunits. Here we report that, in extracellular solution of low divalent cation concentration, the bovine AChR channel has a smaller conductance than the Torpedo AChR channel. Replacement of the delta-subunit of the Torpedo AChR by the bovine delta-subunit makes the channel conductance similar to that of the bovine AChR channel. To locate the region in the delta-subunit responsible for this difference, we have constructed chimaeric delta-subunit cDNAs with different combinations of the Torpedo and bovine counterparts. The conductances of AChR channels containing chimaeric delta-subunits suggest that a region comprising the putative transmembrane segment M2 and the adjacent bend portion between segments M2 and M3 is involved in determining the rate of ion transport through the open channel.
互补DNA表达与单通道电流分析相结合,为研究烟碱型乙酰胆碱受体(AChR)的结构-功能关系提供了一个强大的工具(参考文献1-5)。我们之前已经表明,由不同物种亚基组成的AChR通道,在非洲爪蟾卵母细胞的表面膜中表达,可用于将功能特性与单个亚基联系起来。在此我们报告,在低二价阳离子浓度的细胞外溶液中,牛AChR通道的电导比电鳐AChR通道小。用电鳐AChR的δ亚基替换牛δ亚基,会使通道电导与牛AChR通道的电导相似。为了确定δ亚基中导致这种差异的区域,我们构建了具有电鳐和牛对应亚基不同组合的嵌合δ亚基cDNA。含有嵌合δ亚基的AChR通道的电导表明,一个包含假定跨膜片段M2以及片段M2和M3之间相邻弯曲部分的区域,参与决定离子通过开放通道的运输速率。