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enhancer of seizure: A New Genetic Locus in Drosophila melanogaster Defined by Interactions with Temperature-Sensitive Paralytic Mutations

机译:癫痫发作的增强剂:黑腹果蝇的新遗传基因座由与温度敏感的麻痹突变的相互作用定义。

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摘要

Mutations in the enhancer of seizure (e( sei)) locus have been isolated on the basis of their ability to cause temperature-induced paralysis of alleles at the seizure (sei ) locus at temperatures at which these mutations ordinarily do not paralyze. This enhancer is specific to the seizure locus and is without effect on other temperature-sensitive paralytic mutants including para, nap, tip-E and shi. This suggests that the enhancer responds specifically to the mechanism of paralysis mediated by the seizure mutations. The e(sei) is a recessive mutation which maps to 39.0 on the left arm of chromosome 3. Deficiency mapping has placed it at 69A4-B5 on the salivary gland polytene chromosome map. When a new enhancer allele was isolated following P-M hybrid dysgenesis, there was a concomitant P-element insertion at 69B. In the absence of seizure mutations, the enhancer mutation causes non-temperature dependent hyperactivity when agitated and interferes with the climbing response. Electrophysiological studies examined the effects of increasing temperature on electrical activity in the adult giant fiber/flight muscle system. Neuronal hyperactivity was seen in both e(sei) and sei single mutant homozygotes, but not in wild type. The hyperactivity was more severe in the sei; e(sei) double mutants. The correlation between the physiological effects and the mutant behavior suggests that both sei and e (sei) cause membrane excitability defects. Since previous work has shown that seizure mutants affect [3H]saxitoxin binding to the voltage-sensitive sodium channel, e(sei) may code for a gene product which interacts with this channel.
机译:癫痫发作(e(sei))基因座增强子中的突变已被隔离,原因是它们在这些突变通常不会麻痹的温度下引起癫痫发作(sei)基因座处温度诱导的等位基因麻痹。该增强剂对癫痫发作位点具有特异性,对其他对温度敏感的麻痹突变体(包括对位,小睡,tip-E和shi)没有影响。这表明增强子对癫痫发作突变介导的麻痹机制有特殊反应。 e(sei)是一种隐性突变,在染色体3的左臂上映射为39.0。缺陷映射已将其置于唾液腺多烯染色体图上的69A4-B5处。当一个新的增强子等位基因在P-M杂交发生后分离时被分离出来,在69B处伴随着P元素的插入。在没有癫痫发作突变的情况下,增强子突变在搅动时会引起非温度依赖性的过度活跃,并干扰攀爬反应。电生理研究检查了温度升高对成年巨型纤维/飞行肌系统中电活动的影响。 e(sei)和 sei 单突变纯合子均可见神经元过度活跃,而野生型则未见。 sei ; e sei )双重突变体的多动症更为严重。生理效应与突变体行为之间的相关性表明, sei e sei )都引起膜兴奋性缺陷。由于先前的研究表明癫痫发作突变体会影响[ 3 H]萨克斯毒素与电压敏感钠通道 e sei )可能会编码与该通道相互作用的基因产物。

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