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物种间和疾病中的华勒氏变性中的轴突死亡信号转导。

Axon death signalling in Wallerian degeneration among species and in disease.

机构信息

Department of Fundamental Neurosciences, University of Lausanne, Rue du Bugnon 9, 1005 Lausanne, VD, Switzerland.

出版信息

Open Biol. 2019 Aug 30;9(8):190118. doi: 10.1098/rsob.190118. Epub 2019 Aug 28.

Abstract

Axon loss is a shared feature of nervous systems being challenged in neurological disease, by chemotherapy or mechanical force. Axons take up the vast majority of the neuronal volume, thus numerous axonal intrinsic and glial extrinsic support mechanisms have evolved to promote lifelong axonal survival. Impaired support leads to axon degeneration, yet underlying intrinsic signalling cascades actively promoting the disassembly of axons remain poorly understood in any context, making the development to attenuate axon degeneration challenging. Wallerian degeneration serves as a simple model to study how axons undergo injury-induced axon degeneration (axon death). Severed axons actively execute their own destruction through an evolutionarily conserved axon death signalling cascade. This pathway is also activated in the absence of injury in diseased and challenged nervous systems. Gaining insights into mechanisms underlying axon death signalling could therefore help to define targets to block axon loss. Herein, we summarize features of axon death at the molecular and subcellular level. Recently identified and characterized mediators of axon death signalling are comprehensively discussed in detail, and commonalities and differences across species highlighted. We conclude with a summary of engaged axon death signalling in humans and animal models of neurological conditions. Thus, gaining mechanistic insights into axon death signalling broadens our understanding beyond a simple injury model. It harbours the potential to define targets for therapeutic intervention in a broad range of human axonopathies.

摘要

轴突丢失是神经系统在神经疾病、化疗或机械力挑战下的共同特征。轴突占据了神经元体积的绝大部分,因此许多轴突内在的和神经胶质外在的支持机制已经进化出来,以促进终生轴突存活。支持的受损导致轴突退化,然而,在任何情况下,内在信号级联反应积极促进轴突解体的潜在机制仍知之甚少,这使得减轻轴突退化的发展具有挑战性。Wallerian 变性是研究轴突如何经历损伤诱导的轴突退化(轴突死亡)的简单模型。切断的轴突通过进化保守的轴突死亡信号级联反应积极执行自身的破坏。在患病和受挑战的神经系统中,即使没有损伤,这条通路也会被激活。因此,深入了解轴突死亡信号的机制可以帮助确定阻止轴突丢失的靶点。本文总结了分子和亚细胞水平的轴突死亡特征。最近确定并详细讨论了轴突死亡信号转导的特征性介质,并突出了不同物种之间的共性和差异。最后,我们总结了神经疾病人类和动物模型中参与的轴突死亡信号。因此,深入了解轴突死亡信号的机制不仅拓宽了我们对简单损伤模型的理解,还有可能为广泛的人类轴突病变定义治疗干预的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e044/6731592/2dd24f500cf1/rsob-9-190118-g1.jpg

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