Zhong Y, Wu C F
Department of Biology, University of Iowa, Iowa City 52242.
J Neurogenet. 1993 Aug;9(1):15-27. doi: 10.3109/01677069309167273.
The cAMP concentration in Drosophila is increased by mutations of the dunce (dnc) gene and decreased by mutations of the rutabaga (rut) gene. Such mutants provide a unique means for exploring the role of cAMP in functional and developmental regulation of membrane currents. Four distinct K+ currents have been identified in Drosophila larval muscle fibers, i.e. the voltage-activated transient IA and delayed IK and the Ca(2+)-activated fast ICF and slow ICS. Results from our voltage-clamp studies indicated that both IA and IK were increased in dnc alleles. Normal muscle fibers treated with dibutyryl-cAMP showed a similar increase of IA, but no significant effect on IK. In contrast to the dnc alleles, the rut mutations appeared to enhance ICS greatly while leaving the amplitude of other currents largely unchanged. In addition, the dibutyryl-cAMP-induced increase in IA was not observed in rut fibers. Caffeine and W7, which are known to interfere with several second messenger pathways, also modulated K+ currents in larval muscle fibers. The currents in dnc and rut fibers showed strikingly altered responses to caffeine and W7. The results demonstrate that the various K+ currents in Drosophila muscles are affected by altered cAMP cascades in the mutants. The fact that not all dnc and rut mutant defects can be mimicked or reversed by acute application of cAMP suggests that long-term modulation of K+ currents by cAMP may involve mechanisms distinct from the short-term effect of cAMP.
果蝇中的环磷酸腺苷(cAMP)浓度会因“笨蛋”(dnc)基因突变而升高,因“大头菜”(rut)基因突变而降低。这类突变体为探索cAMP在膜电流功能和发育调控中的作用提供了独特的手段。在果蝇幼虫肌肉纤维中已鉴定出四种不同的钾离子电流,即电压激活的瞬时电流IA和延迟电流IK,以及钙激活的快速电流ICF和缓慢电流ICS。我们电压钳研究的结果表明,dnc等位基因中IA和IK均增加。用二丁酰环磷酸腺苷处理的正常肌肉纤维显示出类似的IA增加,但对IK没有显著影响。与dnc等位基因相反,rut突变似乎极大地增强了ICS,而其他电流的幅度基本不变。此外,在rut纤维中未观察到二丁酰环磷酸腺苷诱导的IA增加。已知会干扰几种第二信使途径的咖啡因和W7,也调节幼虫肌肉纤维中的钾离子电流。dnc和rut纤维中的电流对咖啡因和W7的反应明显改变。结果表明,果蝇肌肉中的各种钾离子电流受到突变体中环磷酸腺苷级联改变的影响。并非所有dnc和rut突变体缺陷都能通过急性应用环磷酸腺苷来模拟或逆转,这一事实表明,环磷酸腺苷对钾离子电流的长期调节可能涉及与环磷酸腺苷短期效应不同的机制。