Shotwell S L
J Neurosci. 1983 Apr;3(4):739-47. doi: 10.1523/JNEUROSCI.03-04-00739.1983.
Drosophila carrying the X-linked mutation dunce (dnc) showed poor learning in a negative reinforcement olfactory conditioning paradigm (Dudai, Y., Y.-N. Jan, D. Byers, W.G. Quinn, and S. Benzer (1976) Proc. Natl. Acad. Sci. U.S.A. 73: 1684-1688). More recently, dnc flies were shown to have reduced activity for one of two cAMP phosphodiesterases (PDEs) present in normal flies, PDE II, whereas PDE form I was unaffected (Byers, D., R. L. Davis, and J. A. Kiger, Jr. (1981) Nature 289: 79-81). A micro-assay technique is described that allows the separate measurement of PDE I and PDE II in crude extracts, based on specific inhibition of PDE I [3H]cAMP hydrolysis by cGMP. Using this technique, PDE II is shown to occur normally at high specific activity in the nervous system, consistent with the hypothesis that this enzyme plays a role in neuronal function. Reduced PDE II activity correlates with poor learning in dnc flies at three developmental stages (first and third instar larva and adult), as well as in response to genetic modification of dnc gene activity. Biochemical and genetic experiments fail to reveal any abnormal regulation of PDE II in dnc. The specific activity of PDE II is shown to correlate in a one to one fashion with the level of normal dnc gene (dnc+) activity at five different doses of dnc+. These results support the hypothesis that PDE II represents the primary product of the dnc gene, indicating a role for this enzyme in Drosophila learning.
携带X连锁突变“愚钝”(dnc)的果蝇在负强化嗅觉条件反射范式中表现出学习能力差(杜戴,Y.,扬,Y.-N.,拜尔斯,D.,奎因,W.G.,和本泽,S.(1976年)《美国国家科学院院刊》73: 1684 - 1688)。最近研究表明,dnc果蝇体内正常果蝇所具有的两种环磷酸腺苷磷酸二酯酶(PDEs)之一的PDE II活性降低,而PDE I型则未受影响(拜尔斯,D.,戴维斯,R.L.,和基格,J.A.,Jr.(1981年)《自然》289: 79 - 81)。本文描述了一种微量测定技术,该技术基于cGMP对PDE I [3H]cAMP水解的特异性抑制作用,能够对粗提物中的PDE I和PDE II进行单独测定。使用该技术表明,PDE II在神经系统中通常以高比活性存在,这与该酶在神经元功能中起作用的假设一致。PDE II活性降低与dnc果蝇在三个发育阶段(一龄和三龄幼虫以及成虫)的学习能力差相关,也与dnc基因活性的基因修饰反应相关。生化和遗传实验未能揭示dnc中PDE II有任何异常调节。在五种不同剂量的dnc +下,PDE II的比活性与正常dnc基因(dnc +)活性水平呈一对一的相关性。这些结果支持了PDE II代表dnc基因主要产物的假设,表明该酶在果蝇学习中起作用。