Stern M, Kreber R, Ganetzky B
Laboratory of Genetics, University of Wisconsin, Madison 53706.
Genetics. 1990 Jan;124(1):133-43. doi: 10.1093/genetics/124.1.133.
The effects of para mutations on behavior and axonal excitability in Drosophila suggested that para specifically affects sodium channels. This hypothesis was confirmed by molecular analysis of the para locus, which demonstrates that the encoded para product is a sodium channel polypeptide. Here we characterize the effects of altered para+ dosage on behavior and axonal excitability, both in an otherwise wild-type background and in combination with two other mutations: napts, which also affects sodium channels, and ShKS133, which specifically affects potassium channels. Whereas it was previously shown that decreased dosage of para+ is unconditionally lethal in a napts background, we find that increased dosage of para+ suppresses napts. Similarly, we find that para hypomorphs or decreased dosage of para+ suppresses ShKS133, whereas increased dosage of para+ enhances ShKS133). The electrophysiological basis for these effects is investigated. Other genes in Drosophila that have sequence homology to sodium channels do not show such dosage effects, which suggests that the para+ product has a function distinct from that of other putative Drosophila sodium channel genes. We conclude that the number of sodium channels present in at least some Drosophila neurons can be affected by changes in para+ gene dosage, and that the level of para+ expression can strongly influence neuronal excitability.
副突变对果蝇行为和轴突兴奋性的影响表明,副基因特异性地影响钠通道。通过对副基因座的分子分析证实了这一假设,该分析表明编码的副产物是一种钠通道多肽。在这里,我们描述了改变副基因剂量对行为和轴突兴奋性的影响,这两种影响既存在于其他方面为野生型的背景中,也存在于与其他两种突变相结合的情况下:napt,它也影响钠通道;以及ShKS133,它特异性地影响钾通道。虽然之前已经表明,在napt背景下,副基因剂量的降低是无条件致死的,但我们发现副基因剂量的增加会抑制napt。同样,我们发现副基因的亚效等位基因或副基因剂量的降低会抑制ShKS133,而副基因剂量的增加则会增强ShKS133。我们研究了这些效应的电生理基础。果蝇中与钠通道具有序列同源性的其他基因并未表现出这种剂量效应,这表明副基因产物具有与其他假定的果蝇钠通道基因不同的功能。我们得出结论,至少某些果蝇神经元中存在的钠通道数量会受到副基因剂量变化的影响,并且副基因的表达水平会强烈影响神经元的兴奋性。