MacKinnon R
Department of Cellular and Molecular Physiology, Harvard Medical School, Boston, Massachusetts 02115.
Nature. 1991 Mar 21;350(6315):232-5. doi: 10.1038/350232a0.
The voltage-activated K+, Na+ and Ca2+ channels are responsible for the generation and propagation of electrical signals in cell membranes. The K+ channels are multimeric membrane proteins formed by the aggregation of an unknown number of independent subunits. By studying the interaction of a scorpion toxin with coexpressed wild-type and toxin-insensitive mutant Shaker K+ channels, the subunit stoichiometry can be determined. The Shaker K+ channel is found to have a tetrameric structure. This is consistent with the sequence relationship between a K+ channel and each of the four internally homologous repeats of Na+ and Ca2+ channels.
电压激活的钾离子、钠离子和钙离子通道负责细胞膜中电信号的产生和传播。钾离子通道是由数量未知的独立亚基聚集形成的多聚体膜蛋白。通过研究蝎毒素与共表达的野生型和毒素不敏感突变型Shaker钾离子通道的相互作用,可以确定亚基化学计量。发现Shaker钾离子通道具有四聚体结构。这与钾离子通道与钠离子和钙离子通道的四个内部同源重复序列中每一个的序列关系一致。