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Effect of sodium channel abundance on Drosophila development, reproductive capacity and aging

机译:钠通道丰度对果蝇发育,生殖能力和衰老的影响

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摘要

The voltage-gated Na+ channels (VGSC) are complex membrane proteins responsible for generation and propagation of the electrical signals through the brain, the skeletal muscle and the heart. The levels of sodium channels affect behavior and physical activity. This is illustrated by the maleless mutant allele (mle(napts)) in Drosophila, where the decreased levels of voltage-gated Na+ channels cause temperature-sensitive paralysis. Here, we report that mle(napts) mutant flies exhibit developmental lethality, decreased fecundity and increased neurodegeneration. The negative effect of decreased levels of Na+ channels on development and ts-paralysis was more pronounced at 18 and 29 degrees C than at 25 degrees C, suggesting particular sensitivity of the mle(napts) flies to temperatures above and below normal environmental conditions. Similarly, longevity of mle(napts) flies was unexpectedly short at 18 and 29 degrees C compared with flies heterozygous for the mle(napts) mutation. Developmental lethality and neurodegeneration of mle(napts) flies was partially rescued by increasing the dosage of para, confirming a vital role of Na+ channels in development, longevity and neurodegeneration of flies and their adaptation to temperatures
机译:电压门控的Na +通道(VGSC)是复杂的膜蛋白,负责通过大脑,骨骼肌和心脏产生和传播电信号。钠通道的水平会影响行为和身体活动。果蝇中的无雄性突变等位基因(mle(napts))说明了这一点,其中电压门控的Na +通道水平降低导致对温度敏感的麻痹。在这里,我们报告mle(napts)突变体蝇表现出发育杀伤力,繁殖力下降和神经变性增加。 Na +通道水平降低对发育和ts麻痹的负面影响在18和29摄氏度下比在25摄氏度下更为明显,这表明m(幼虫)对高于或低于正常环境条件的温度具有特殊的敏感性。同样,与杂合子的杂种(napts)突变相比,杂种(napts)的苍蝇在18和29摄氏度的寿命异常短。通过增加对乙酰氨基酚的剂量,部分挽救了le蝇的发育致死性和神经变性,这证实了Na +通道在蝇的发育,寿命和神经变性及其对温度的适应性中起着至关重要的作用。

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