Zhong Y, Budnik V, Wu C F
Department of Biology, University of Iowa, Iowa City 52242.
J Neurosci. 1992 Feb;12(2):644-51. doi: 10.1523/JNEUROSCI.12-02-00644.1992.
Activity-dependent synaptic plasticity has been implicated in the refinement and modification of neural circuits during development and learning. Previous studies show that activity-induced facilitation and potentiation are disrupted at larval neuromuscular junctions in the memory mutants dunce (dnc) and rutabaga (rut) of Drosophila. The diminished learning-memory capacity and synaptic transmission plasticity have been associated with altered cAMP levels since dnc affects the cAMP-specific phosphodiesterase and rut affects adenylate cyclase. In this study, the morphology of larval motor axon terminals was examined by anti-HRP immunohistochemistry. It was found that the numbers of terminal varicosities and branches were increased in dnc mutants, which have elevated cAMP concentrations. Such increase was suppressed in dnc rut double mutants by rut mutations, which reduce cAMP synthesis. More profuse projections of larval motor axons have also been reported in double-mutant combinations of ether à go-go (eag) and Shaker (Sh) alleles, which display greatly enhanced nerve activity as a result of reduction in different K+ currents. Therefore, we examined combinations of dnc and rut with eag and Sh mutations to explore the possible relation between activity- and cAMP-induced morphological changes. We found that the expanded projections in dnc were further enhanced in double mutants of dnc with either eag or Sh, an effect that could again be suppressed by rut. The results provide evidence for altered plasticity of synaptic morphology in memory mutants dnc and rut and suggest a role of cAMP cascade in mediating activity-dependent synaptic plasticity.
依赖活动的突触可塑性与发育和学习过程中神经回路的细化和修饰有关。先前的研究表明,在果蝇的记忆突变体迟钝(dnc)和芜菁(rut)的幼虫神经肌肉接头处,活动诱导的易化和增强作用受到破坏。由于dnc影响cAMP特异性磷酸二酯酶,rut影响腺苷酸环化酶,学习记忆能力和突触传递可塑性的降低与cAMP水平的改变有关。在本研究中,通过抗HRP免疫组织化学检查幼虫运动轴突终末的形态。发现在cAMP浓度升高的dnc突变体中,终末膨体和分支的数量增加。通过降低cAMP合成的rut突变,这种增加在dnc rut双突变体中受到抑制。在ether à go-go(eag)和震颤(Sh)等位基因的双突变组合中也报道了幼虫运动轴突的更丰富投射,由于不同K +电流的减少,它们表现出大大增强的神经活动。因此,我们研究了dnc和rut与eag和Sh突变的组合,以探索活动诱导和cAMP诱导的形态变化之间的可能关系。我们发现,在dnc与eag或Sh的双突变体中,dnc中扩展的投射进一步增强,rut再次抑制了这种效应。这些结果为记忆突变体dnc和rut中突触形态可塑性的改变提供了证据,并表明cAMP级联在介导依赖活动的突触可塑性中起作用。