AMPK Signalling and Defective Energy Metabolism in Amyotrophic Lateral Sclerosis

安普克 肌萎缩侧索硬化 生物 SOD1 神经科学 代谢亢进 线粒体 AMP活化蛋白激酶 糖酵解 神经退行性变 内科学 细胞生物学 蛋白激酶A 医学 内分泌学 激酶 新陈代谢 疾病
作者
Nirma D. Perera,Bradley J. Turner
出处
期刊:Neurochemical Research [Springer Science+Business Media]
卷期号:41 (3): 544-553 被引量:50
标识
DOI:10.1007/s11064-015-1665-3
摘要

Amyotrophic lateral sclerosis (ALS) is caused by selective loss of upper and lower motor neurons by complex mechanisms that are incompletely understood. Motor neurons are large, highly polarised and excitable cells with unusually high energetic demands to maintain resting membrane potential and propagate action potentials. This leads to higher ATP consumption and mitochondrial metabolism in motor neurons relative to other cells. Here, we review increasing evidence that defective energy metabolism and homeostasis contributes to selective vulnerability and degeneration of motor neurons in ALS. Firstly, we provide a brief overview of major energetic pathways in the CNS, including glycolysis, oxidative phosphorylation and the AMP-activated protein kinase (AMPK) signalling pathway, while highlighting critical metabolic interactions between neurons and astrocytes. Next, we review evidence from ALS patients and transgenic mutant SOD1 mice for weight loss, hypermetabolism, hyperlipidemia and mitochondrial dysfunction in disease onset and progression. Genetic and therapeutic modifiers of energy metabolism in mutant SOD1 mice will also be summarised. We also present evidence that additional ALS-linked proteins, TDP-43 and FUS, lead to energy disruption and mitochondrial defects in motor neurons. Lastly, we review emerging evidence including our own that dysregulation of the AMPK signalling cascade in motor neurons is an early and common event in ALS pathogenesis. We suggest that an imbalance in energy metabolism should be considered an important factor in both progression and potential treatment of ALS.
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