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一种视觉系统中散发性轴突退化的定量模型。

A Quantitative Model of Sporadic Axonal Degeneration in the Visual System.

机构信息

Deutsches Zentrum für Neurodegenerative Erkrankungen e. V., 53127 Bonn, Germany.

Brain Research Institute, Niigata University, Niigata 951-8585, Japan.

出版信息

J Neurosci. 2022 Jun 15;42(24):4937-4952. doi: 10.1523/JNEUROSCI.2115-21.2022. Epub 2022 May 9.

Abstract

In human neurodegenerative diseases, neurons undergo axonal degeneration months to years before they die. Here, we developed a system modeling early degenerative events in adult photoreceptor cells. Thanks to the stereotypy of their axonal projections, this system delivers quantitative data on sporadic and progressive axonal degeneration of photoreceptor cells. Using this method, we show that exposure of adult female flies to a constant light stimulation for several days overcomes the intrinsic resilience of R7 photoreceptors and leads to progressive axonal degeneration. This was not associated with apoptosis. We furthermore provide evidence that loss of synaptic integrity between R7 and a postsynaptic partner preceded axonal degeneration, thus recapitulating features of human neurodegenerative diseases. Finally, our experiments uncovered a role of postsynaptic partners of R7 to initiate degeneration, suggesting that postsynaptic cells signal back to the photoreceptor to maintain axonal structure. This model can be used to dissect cellular and circuit mechanisms involved in the early events of axonal degeneration, allowing for a better understanding of how neurons cope with stress and lose their resilience capacities. Neurons can be active and functional for several years. In the course of aging and in disease conditions leading to neurodegeneration, subsets of neurons lose their resilience and start dying. What initiates this turning point at the cellular level is not clear. Here, we developed a model allowing to systematically describe this phase. The loss of synapses and axons represents an early and functionally relevant event toward degeneration. Using the ordered distribution of photoreceptor axon terminals, we assembled a system to study sporadic initiation of axon loss and delineated a role for non-cell-autonomous activity regulation in the initiation of axon degeneration. This work will help shed light on key steps in the etiology of nonfamilial cases of neurodegenerative diseases.

摘要

在人类神经退行性疾病中,神经元在死亡前数月至数年内经历轴突退化。在这里,我们开发了一种模拟成年光感受器细胞早期退行性事件的系统。由于其轴突投射的刻板性,该系统提供了关于光感受器细胞散发性和进行性轴突退化的定量数据。使用这种方法,我们表明,成年雌性苍蝇连续几天暴露在恒定的光刺激下,克服了 R7 光感受器的内在弹性,并导致进行性轴突退化。这与细胞凋亡无关。我们进一步提供了证据表明,R7 与一个突触后伙伴之间的突触完整性丧失先于轴突退化,从而再现了人类神经退行性疾病的特征。最后,我们的实验揭示了 R7 的突触后伙伴在引发退化中的作用,表明突触后细胞向光感受器发出信号以维持轴突结构。该模型可用于剖析参与轴突退化早期事件的细胞和电路机制,从而更好地理解神经元如何应对压力并丧失其弹性能力。神经元可以活跃和功能正常数年。在衰老过程中和导致神经退行性变的疾病条件下,神经元亚群丧失了它们的弹性并开始死亡。在细胞水平上引发这一转折点的是什么尚不清楚。在这里,我们开发了一种模型,可以系统地描述这一阶段。突触和轴突的丧失代表了向退化的早期和功能相关事件。我们利用光感受器轴突末端的有序分布,组装了一个系统来研究轴突丢失的散发性起始,并阐明了非细胞自主活性调节在轴突退化起始中的作用。这项工作将有助于阐明非家族性神经退行性疾病的病因学中的关键步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b27/9188428/3e81358c28f7/SN-JNSJ220306F001.jpg

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