线粒体功能障碍,神经退行性疾病的原因还是结果?

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY BioEssays Pub Date : 2024-10-04 DOI:10.1002/bies.202400023
Zoë P Van Acker, Thomas Leroy, Wim Annaert
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引用次数: 0

摘要

神经退行性疾病包括一系列以中枢和周围神经系统神经元逐渐退化为特征的疾病。虽然它们的起源是多方面的,但新出现的数据强调线粒体功能受损和溶酶体内稳态对病变的发生和发展起着关键作用。本文探讨了线粒体功能障碍是致病因素还是与溶酶体内功能衰退密切相关。随着对神经退行性疾病遗传学研究的深入,越来越多与内溶酶体和自噬功能调控相关的风险位点和基因被发现,这表明线粒体健康受到下游影响。我们的假说集中于这样一种观点,即溶酶体内过程的紊乱可能会通过中断的细胞器间通信传播到其他细胞器,包括线粒体。我们结合阿尔茨海默氏症和帕金森氏症等主要神经退行性疾病讨论了这些观点及其与潜在治疗途径的相关性。
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Mitochondrial dysfunction, cause or consequence in neurodegenerative diseases?

Neurodegenerative diseases encompass a spectrum of conditions characterized by the gradual deterioration of neurons in the central and peripheral nervous system. While their origins are multifaceted, emerging data underscore the pivotal role of impaired mitochondrial functions and endolysosomal homeostasis to the onset and progression of pathology. This article explores whether mitochondrial dysfunctions act as causal factors or are intricately linked to the decline in endolysosomal function. As research delves deeper into the genetics of neurodegenerative diseases, an increasing number of risk loci and genes associated with the regulation of endolysosomal and autophagy functions are being identified, arguing for a downstream impact on mitochondrial health. Our hypothesis centers on the notion that disturbances in endolysosomal processes may propagate to other organelles, including mitochondria, through disrupted inter-organellar communication. We discuss these views in the context of major neurodegenerative diseases including Alzheimer's and Parkinson's diseases, and their relevance to potential therapeutic avenues.

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来源期刊
BioEssays
BioEssays 生物-生化与分子生物学
CiteScore
7.30
自引率
2.50%
发文量
167
审稿时长
4-8 weeks
期刊介绍: molecular – cellular – biomedical – physiology – translational research – systems - hypotheses encouraged BioEssays is a peer-reviewed, review-and-discussion journal. Our aims are to publish novel insights, forward-looking reviews and commentaries in contemporary biology with a molecular, genetic, cellular, or physiological dimension, and serve as a discussion forum for new ideas in these areas. An additional goal is to encourage transdisciplinarity and integrative biology in the context of organismal studies, systems approaches, through to ecosystems, where appropriate.
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