Angaut-Petit D, Toth P, Rogero O, Faille L, Tejedor F J, Ferrús A
Laboratoire de Neurobiologie Cellulaire et Moléculaire, CNRS, Gif-sur-Yvette, France.
Eur J Neurosci. 1998 Feb;10(2):423-34. doi: 10.1046/j.1460-9568.1998.00031.x.
Frequenin is a Drosophila Ca2+ binding protein whose overexpression causes a chronic facilitation of transmitter release at the larval neuromuscular junction and multiple firing of action potentials. These functional abnormalities are similar to those found in other hyperexcitable mutants (Shaker, ether-a-gogo, Hyperkinetic) which, in turn, exhibit increased branching at the motor nerve endings. We report here that mutants which overexpress frequenin have motor nerve terminals with reduced number and length of branches as well as number of synaptic boutons. Similar defects are observed in transgenic flies which have additional copies of the frequenin gene indicating that the phenotype can be adscribed to the overexpression of the protein. The ultrastructure of boutons, however, appears indistinguishable from wild type. In addition, we show here that frequenin overexpression leads also to a down regulation of Shaker proteins expression. The contrast between the observations in frequenin and the other hyperexcitable mutants indicates that nerve terminal morphology and enhanced transmitter release do not have a direct causal relationship.
频率蛋白是一种果蝇钙结合蛋白,其过表达会导致幼虫神经肌肉接头处递质释放的慢性易化以及动作电位的多次发放。这些功能异常与其他兴奋性过高的突变体(如“振子”、“醚 - 去极化”、“多动”)中发现的异常相似,而这些突变体在运动神经末梢又表现出分支增加。我们在此报告,过表达频率蛋白的突变体其运动神经末梢的分支数量、长度以及突触小体数量均减少。在具有频率蛋白基因额外拷贝的转基因果蝇中也观察到了类似缺陷,这表明该表型可归因于该蛋白的过表达。然而,突触小体的超微结构似乎与野生型并无差异。此外,我们在此表明,频率蛋白的过表达还会导致“振子”蛋白表达的下调。频率蛋白与其他兴奋性过高的突变体的观察结果之间的差异表明,神经末梢形态与递质释放增强并无直接因果关系。