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Mutations affecting the delayed rectifier potassium current in Drosophila.

机译:影响果蝇延迟整流钾电流的突变。

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Mutations and pharmacological agents have been used to resolve and analyze several K(+) currents in Drosophila. Mutations that affect channels carrying the voltage-activated I(A) and the Ca(2+) -activated I(CF) have helped greatly in analyzing the structure, function and regulation of these channels. We now report mutations that selectively affect the delayed rectifier current, I(K). Flies mutagenized with ethylmethanesulfonate were screened for temperature-induced paralysis. Paralytic mutants identified in the screen were examined for K(+) currents in the larval body-wall muscles. The z66 mutant larvae showed a significant reduction in I(K). The mutation did not affect other K(+) currents (I(A), I(CF), or I(CS) ) or the Ca(2+) channel current in the muscles. Another mutation, z4, which showed reduced I(K), failed to complement z66. Genetic analysis localized the gene disrupted by z66 and z4 to the left arm of chromosome 3, in the 63A1-63B6 region on polytene chromosomes. The z66 and the z4 mutations, which lie in the Shab K(+) channel gene, provide an opportunity to undertake analysis of the functioning of these channels and to study the role of these channels in membrane excitability.
机译:突变和药理作用已被用来解决和分析果蝇中的几种K(+)电流。影响携带电压激活的I(A)和Ca(2+)激活的I(CF)的通道的突变已大大有助于分析这些通道的结构,功能和调节。现在,我们报告选择性影响延迟整流器电流I(K)的突变。筛选了用甲基磺酸乙酯诱变的果蝇,以进行温度诱导的麻痹。在屏幕上确定的麻痹突变体检查幼虫体壁肌肉中的K(+)电流。 z66突变幼虫显示出I(K)的显着降低。突变不会影响其他K(+)电流(I(A),I(CF)或I(CS))或肌肉中的Ca(2+)通道电流。另一个突变z4,显示I(K)降低,未能补充z66。遗传分析将被z66和z4破坏的基因定位于3号染色体的左臂,位于多烯染色体的63A1-63B6区。位于Shab K(+)通道基因中的z66和z4突变提供了进行这些通道功能分析和研究这些通道在膜兴奋性中的作用的机会。

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