Neurobiology Lab for Brain Aging and Mental Health, Transfaculty Research Platform, Molecular & Cognitive Neuroscience, University of Basel, 4002 Basel, Switzerland.
Psychiatric University Clinics Basel, 4002 Basel, Switzerland.
Int J Mol Sci. 2020 Sep 1;21(17):6344. doi: 10.3390/ijms21176344.
Abnormal tau protein aggregation in the brain is a hallmark of tauopathies, such as frontotemporal lobar degeneration and Alzheimer's disease. Substantial evidence has been linking tau to neurodegeneration, but the underlying mechanisms have yet to be clearly identified. Mitochondria are paramount organelles in neurons, as they provide the main source of energy (adenosine triphosphate) to these highly energetic cells. Mitochondrial dysfunction was identified as an early event of neurodegenerative diseases occurring even before the cognitive deficits. Tau protein was shown to interact with mitochondrial proteins and to impair mitochondrial bioenergetics and dynamics, leading to neurotoxicity. In this review, we discuss in detail the different impacts of disease-associated tau protein on mitochondrial functions, including mitochondrial transport, network dynamics, mitophagy and bioenergetics. We also give new insights about the effects of abnormal tau protein on mitochondrial neurosteroidogenesis, as well as on the endoplasmic reticulum-mitochondria coupling. A better understanding of the pathomechanisms of abnormal tau-induced mitochondrial failure may help to identify new targets for therapeutic interventions.
脑内异常的 tau 蛋白聚集是 tau 病的标志,如额颞叶痴呆和阿尔茨海默病。大量证据表明 tau 与神经退行性变有关,但潜在的机制尚未明确确定。线粒体是神经元中最重要的细胞器,因为它们为这些高能量细胞提供主要的能量来源(三磷酸腺苷)。线粒体功能障碍被认为是神经退行性疾病的早期事件,甚至发生在认知缺陷之前。已经表明 tau 蛋白与线粒体蛋白相互作用,并损害线粒体生物能学和动力学,导致神经毒性。在这篇综述中,我们详细讨论了与疾病相关的 tau 蛋白对线粒体功能的不同影响,包括线粒体运输、网络动力学、线粒体自噬和生物能学。我们还提供了关于异常 tau 蛋白对线粒体神经甾体生成以及内质网-线粒体偶联影响的新见解。更好地了解异常 tau 诱导的线粒体衰竭的发病机制可能有助于确定治疗干预的新靶点。