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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The dystrophin Dp186 isoform regulates neurotransmitter release at a central synapse in Drosophila.
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The dystrophin Dp186 isoform regulates neurotransmitter release at a central synapse in Drosophila.

机译:抗肌萎缩蛋白Dp186亚型调节果蝇中央突触中的神经递质释放。

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摘要

The Dystrophin protein is encoded by a gene that, when mutated in humans, can cause Duchenne muscular dystrophy, a disease characterized by progressive muscle wasting. A number of Duchenne patients also exhibit poorly understood mental retardation, likely associated with loss of a brain-specific isoform. Furthermore, although Dystrophin isoforms and the related Utrophin protein have long been known to localize at synapses, their functions remain essentially unknown. In Drosophila, we find that the CNS-specific Dp186 isoform localizes to the embryonic and larval neuropiles, regions rich in synaptic contacts. In the absence of Dp186, evoked but not spontaneous presynaptic release is significantly enhanced. Increased presynaptic release can be fully rescued to wild-type levels by expression of a Dp186 transgene in the postsynaptic motoneuron, indicating that Dp186 likely regulates a retrograde signaling pathway. Potentiation of synaptic currents in the mutant also occurs when cholinergic transmission is inhibited or in the absence of Glass Bottom Boat (Gbb) or Wishful Thinking (Wit), a TGF-beta ligand and receptor, respectively, both previously implicated in synaptic retrograde signaling. These results are consistent with the possibility that Dp186 modulates other non-Gbb/Wit-dependent retrograde signaling pathways required to maintain normal synaptic physiology.
机译:肌营养不良蛋白由一个基因编码,当在人类中突变时,该基因可引起杜氏肌营养不良症,这种疾病的特征是进行性肌肉萎缩。许多Duchenne患者还表现出理解不足的智力低下,可能与脑特异性同工型的丧失有关。此外,尽管早已知道肌营养不良蛋白同工型和相关的卵磷脂蛋白位于突触,但其功能基本上仍是未知的。在果蝇中,我们发现中枢神经系统特定的Dp186同工型定位于胚胎和幼虫的神经堆,这些区域富含突触接触。在没有Dp186的情况下,诱发但不是自发的突触前释放明显增强。通过在突触后运动神经元中表达Dp186转基因,可以将突触前释放的增加完全恢复至野生型水平,这表明Dp186可能调节逆行信号通路。当胆碱能传递受到抑制或在缺乏玻璃底船(Gbb)或如意算盘(Wit),TGF-β配体和受体的情况下,以前都参与突触逆行信号传导时,突变体中的突触电流增强也会发生。这些结果与Dp186调节维持正常突触生理所需的其他非Gbb / Wit依赖性逆行信号通路的可能性一致。

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