Kauvar L M
J Neurosci. 1982 Oct;2(10):1347-58. doi: 10.1523/JNEUROSCI.02-10-01347.1982.
A detailed characterization of the cyclic nucleotide phosphodiesterase (PDEs) from normal Drosophila melanogaster was made, including purification of the two major enzymes to near homogeneity. A third more labile phosphodiesterase also was identified in crude homogenates. The total activity per fly of one of these three enzymes, PDE-II, is strongly influenced by the dunce locus. Two independently derived dunce mutants produce variations of PDE-II with modified intrinsic properties: a marked decrease of thermal stability in dunce and a 10-fold increase in the Michaelis kinetic constant in dunce. These defects, which persisted in purified preparations of PDE-II, were mapped genetically to dunce. The results support the identification of dunce as the structural locus for PDE-II. The tight connection between the dunce gene and the PDE-II enzyme indicates that defective cyclic adenosine 3':5'-monophosphate metabolism is the primary lesion which leads to failure of dunce flies to learn in the olfactory associative conditioning paradigm of Quinn et al. (Quinn, W. G., W. A. Harris, and S. Benzer (1974) Proct. Natl. Acad. Sci. U. S. A. 71: 708-712).
对正常黑腹果蝇的环核苷酸磷酸二酯酶(PDEs)进行了详细的特性描述,包括将两种主要酶纯化至接近均一状态。在粗匀浆中还鉴定出了第三种更不稳定的磷酸二酯酶。这三种酶之一的PDE-II,每只果蝇的总活性受“笨蛋”基因座的强烈影响。两个独立衍生的“笨蛋”突变体产生了具有改变的内在特性的PDE-II变体:“笨蛋”中的热稳定性显著降低,而“笨蛋”中的米氏动力学常数增加了10倍。这些缺陷在PDE-II的纯化制剂中仍然存在,并通过遗传学方法定位到“笨蛋”基因座。这些结果支持将“笨蛋”鉴定为PDE-II的结构基因座。“笨蛋”基因与PDE-II酶之间的紧密联系表明,有缺陷的环磷酸腺苷代谢是导致“笨蛋”果蝇在奎因等人(奎因,W.G.,W.A.哈里斯和S.本泽(1974年)《美国国家科学院院刊》71:708 - 712)的嗅觉联想条件范式中学习失败的主要病变。