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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Effect of amyloids on the vesicular machinery: implications for somatic neurotransmission
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Effect of amyloids on the vesicular machinery: implications for somatic neurotransmission

机译:淀粉样蛋白对水泡机械的影响:对体细胞神经传递的影响。

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摘要

Certain neurodegenerative diseases are thought to be initiated by the aggregation of amyloidogenic proteins. However, the mechanism underlying toxicity remains obscure. Most of the suggested mechanisms are generic in nature and do not directly explain the neuron-type specific lesions observed in many of these diseases. Some recent reports suggest that the toxic aggregates impair the synaptic vesicular machinery. This may lead to an understanding of the neuron-type specificity observed in these diseases. A disruption of the vesicular machinery can also be deleterious for extra-synaptic, especially somatic, neurotransmission (common in serotonergic and dopaminergic systems which are specifically affected in Alzheimer's disease (AD) and Parkinson's disease (PD), respectively), though this relationship has remained unexplored. In this review, we discuss amyloid-induced damage to the neurotransmitter vesicular machinery, with an eye on the possible implications for somatic exocytosis. We argue that the larger size of the system, and the availability of multi-photon microscopy techniques for directly visualizing monoamines, make the somatic exocytosis machinery a more tractable model for understanding the effect of amyloids on all types of vesicular neurotransmission. Indeed, exploring this neglected connection may not just be important, it may be a more fruitful route for understanding AD and PD.
机译:某些神经退行性疾病被认为是由淀粉样蛋白合成引起的。但是,潜在的毒性机理仍然不清楚。大多数建议的机制本质上是通用的,不能直接解释在许多这类疾病中观察到的神经元型特异性病变。最近的一些报道表明,有毒的聚集体损害了突触的囊泡机械。这可能会导致对这些疾病中观察到的神经元类型特异性的了解。囊泡机械的破坏也可能对突触外,尤其是体细胞的神经传递有害(在血清素能和多巴胺能系统中常见,分别受阿尔茨海默氏病(AD)和帕金森氏病(PD)的影响)仍未开发。在这篇综述中,我们讨论了淀粉样蛋白诱导的神经递质囊泡机械的损害,并着眼于体细胞胞吐作用的可能影响。我们认为,更大的系统尺寸以及直接可视化单胺的多光子显微镜技术的可用性,使体细胞胞吐机制成为理解淀粉样蛋白对所有类型囊泡神经传递作用的更易处理的模型。确实,探索这种被忽视的联系可能不仅重要,而且可能是理解AD和PD的更富有成果的途径。

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