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首页> 外文期刊>Brain pathology >The lurcher mutation and ionotropic glutamate receptors: contributions to programmed neuronal death in vivo.
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The lurcher mutation and ionotropic glutamate receptors: contributions to programmed neuronal death in vivo.

机译:lurcher突变和离子型谷氨酸受体:对体内程序性神经元死亡的贡献。

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摘要

The recent positional cloning and physiological characterization of the lurcher mutation resulted in the identification of a novel stimulus that results in neurodegeneration. The catastrophic loss of cerebellar Purkinje cells in lurcher heterozygotes has now been strongly associated with a large constitutive inward current which ultimately activates a programmed form of neuronal death. The completely penetrant and focal nature of the lurcher phenotype gives us an opportunity to investigate the manner in which neurons respond to an aberrant signal in the context of the brain parenchyma. Although there is no human genetic disease that is equivalent to the lurcher mutation at this time, its triggering of programmed neuronal death enables us to pose and address questions that are relevant to a large number of human neurological diseases. The advantage of working in a genetically manipulable in vivo mammalian system is evident: we can address questions relating to gene function in the nervous system in a context that is physiological. Classical genetic analyses looking for molecules that suppress or modify the lurcher phenotype are under way and have now been supplemented with two novel techniques developed in our laboratory: biolistic transfection of cerebellar slices and Bacterial Artificial Chromosome modification. The integration of these novel and classical approaches will facilitate the testing of hypotheses, developed during the course of our study of the lurcher mutation, which explore the propagation of abnormal signals and the initiation of programmed neuronal death in neurons.
机译:最近的位置克隆和lurcher突变的生理学表征导致鉴定出导致神经变性的新型刺激。懒汉杂合子中小脑浦肯野细胞的灾难性损失现已与大量本构性内向电流密切相关,后者最终激活了程序性形式的神经元死亡。潜伏者表型的完全渗透性和局灶性使我们有机会研究神经实质在脑实质中对异常信号作出反应的方式。尽管目前尚无与lurcher突变相当的人类遗传病,但其引发程序性神经元死亡的触发使我们能够提出并解决与许多人类神经病有关的问题。在可遗传操纵的体内哺乳动物系统中工作的优势显而易见:我们可以在生理环境中解决与神经系统基因功能有关的问题。寻找抑制或修饰潜伏者表型的分子的经典遗传分析正在进行中,并且现已通过我们实验室开发的两种新技术进行了补充:小脑切片的生物弹射转染和细菌人工染色体修饰。这些新颖和经典方法的整合将促进对假设的检验,这些假设是在我们对lurcher突变进行研究的过程中开发的,该研究探讨了异常信号的传播和神经元中程序性神经元死亡的启动。

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