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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Restoration of Motor Defects Caused by Loss of Drosophila TDP-43 by Expression of the Voltage-Gated Calcium Channel, Cacophony, in Central Neurons
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Restoration of Motor Defects Caused by Loss of Drosophila TDP-43 by Expression of the Voltage-Gated Calcium Channel, Cacophony, in Central Neurons

机译:通过表达电压门控钙通道,CACOCOON,中枢神经元的衰落引起的电动机缺陷恢复

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Defects in the RNA-binding protein, TDP-43, are known to cause a variety of neurodegenerative diseases, including amyotrophic lateral sclerosis and frontotemporal lobar dementia. A variety of experimental systems have shown that neurons are sensitive to TDP-43 expression levels, yet the specific functional defects resulting from TDP-43 dysregulation have not been well described. Using the Drosophila TDP-43 ortholog TBPH, we previously showed that TBPH-null animals display locomotion defects as third instar larvae. Furthermore, loss of TBPH caused a reduction in cacophony, a Type II voltage-gated calcium channel, expression and that genetically restoring cacophony in motor neurons in TBPH mutant animals was sufficient to rescue the locomotion defects. In the present study, we examined the relative contributions of neuromuscular junction physiology and the motor program to the locomotion defects and identified subsets of neurons that require cacophony expression to rescue the defects. At the neuromuscular junction, we showed mEPP amplitudes and frequency require TBPH. Cacophony expression in motor neurons rescued mEPP frequency but not mEPP amplitude. We also showed that TBPH mutants displayed reduced motor neuron bursting and coordination during crawling and restoring cacophony selectively in two pairs of cells located in the brain, the AVM001b/2b neurons, also rescued the locomotion and motor defects, but not the defects in neuromuscular junction physiology. These results suggest that the behavioral defects associated with loss of TBPH throughout the nervous system can be associated with defects in a small number of genes in a limited number of central neurons, rather than peripheral defects.
机译:已知RNA结合蛋白的缺陷TDP-43,导致各种神经变性疾病,包括肌营养的外侧硬化和额定颞叶痴呆症。各种实验系统表明,神经元对TDP-43表达水平敏感,然而,由TDP-43脱胶引起的特异性缺陷尚未得到很好地描述。使用果蝇TDP-43 Ortholog TBPH,我们以前表明TBPH-NULL动物显示作为第三龄幼虫的运动缺陷。此外,TBPH的丧失引起了Cacophony的减少,II型电压门控钙通道,表达,并且TBPH突变动物中的电动机神经元中的遗传恢复的CAROCONOCON足以拯救运动缺陷。在本研究中,我们研究了神经肌肉结生理学和电机程序对运动缺陷的相对贡献,并确定了需要Cacophony表达以拯救缺陷的神经元的子集。在神经肌肉交叉点,我们展示了MEPP振幅和频率需要TBPH。电机神经元中的Cacophony表达救出了MEPP频率,但不是MEPP振幅。我们还表明,TBPH突变体在爬行和恢复心电神期间显示出降低的电动机神经元爆裂和协调,在位于大脑中的两对细胞中,AVM001B / 2B神经元,也救出了运动和电机缺陷,但不是神经肌肉交界处的缺陷生理。这些结果表明,在整个神经系统中与TBPH的损失相关的行为缺陷可以与少量基因中的缺陷相关,其中有限数量的中央神经元,而不是外围缺陷。

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