Dudai Y, Sher B, Segal D, Yovell Y
J Neurogenet. 1985 Dec;2(6):365-80. doi: 10.3109/01677068509101423.
The Drosophila memory mutant rutabaga (rut) has been previously shown to have a defective subpopulation (or functional state) of the enzyme adenylate cyclase. We report here that the reduced adenylate cyclase activity is also associated with a defective responsiveness of the enzyme to forskolin. Forskolin activation isotherms of the enzyme in normal membranes reveal low- and high-affinity forskolin-interacting components; the residual enzyme in the mutant shows a smaller proportion of the high-affinity response. In addition, in mutant membrane preparations, forskolin fails to shift the Km of the enzyme for free Mg2+ and for MgATP, in contrast to the situation in the normal tissue. The defect in the responsiveness to forskolin in rut is even more pronounced in a Lubrol-solubilized enzyme preparation, and is due to intrinsic properties of the cyclase system rather than to the absence (or presence) of a soluble, or detergent solubilized, factor in rut. The reduced forskolin responsiveness maps to the X chromosomal segment 12F5-6 to 13A1-5, within the region previously reported to span the locus that controls both the abortive memory and the lack of Ca2+-stimulation of adenylate cyclase in rut17. The possible relevance of the findings to postulated molecular mechanisms of short-term memory formation is discussed.
果蝇记忆突变体芜菁(rut)先前已被证明其腺苷酸环化酶存在缺陷亚群(或功能状态)。我们在此报告,腺苷酸环化酶活性降低还与该酶对福斯可林的反应性缺陷有关。正常膜中该酶的福斯可林激活等温线显示出低亲和力和高亲和力的福斯可林相互作用成分;突变体中的残留酶显示出高亲和力反应的比例较小。此外,与正常组织的情况相反,在突变体膜制剂中,福斯可林未能改变该酶对游离Mg2+和MgATP的米氏常数。在十二烷基硫酸钠溶解的酶制剂中,rut对福斯可林的反应性缺陷更为明显,这是由于环化酶系统的内在特性,而非rut中可溶性或去污剂溶解因子的缺失(或存在)。福斯可林反应性降低映射到X染色体区段12F5 - 6至13A1 - 5,该区域先前报道跨越控制rut17中记忆缺失和腺苷酸环化酶缺乏Ca2+刺激的基因座。本文讨论了这些发现与短期记忆形成的假定分子机制的可能相关性。