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Lipoic acid: energy metabolism and redox regulation of transcription and cell signaling

机译:硫辛酸:能量代谢和氧化还原调节转录和细胞信号转导

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摘要

The role of R-α-lipoic acid as a cofactor (lipoyllysine) in mitochondrial energy metabolism is well established. Lipoic acid non-covalently bound and exogenously administered to cells or supplemented in the diet is a potent modulator of the cell’s redox status. The diversity of beneficial effects of lipoic acid in a variety of tissues can be mechanistically viewed in terms of thiol/disulfide exchange reactions that modulate the environment’s redox and energy status. Lipoic acid-driven thiol/disulfide exchange reactions appear critical for the modulation of proteins involved in cell signaling and transcription factors. This review emphasizes the effects of lipoic acid on PI3K and AMPK signaling and related transcriptional pathways that are integrated by PGC-1α, a critical regulator of energy homoestasis. The effects of lipoic acid on the neuronal energy-redox axis are largely reviewed in terms of their outcomes for aging and age-related neurodegenerative diseases.
机译:R-α-硫辛酸作为辅助因子(脂酰赖氨酸)在线粒体能量代谢中的作用已得到充分确立。非共价结合并外源给予细胞或饮食中补充的硫辛酸是细胞氧化还原状态的有效调节剂。可以通过硫醇/二硫键交换反应来调节环境中的氧化还原和能量状态,从而从机械角度观察硫辛酸在各种组织中的有益作用的多样性。硫辛酸驱动的硫醇/二硫键交换反应对于调节参与细胞信号传导和转录因子的蛋白质显得至关重要。这篇综述强调了硫辛酸对PI3K和AMPK信号转导以及相关的转录途径的影响,而PGC-1α是能量稳态的关键调节剂,它整合了相关的转录途径。硫辛酸对衰老和与年龄有关的神经退行性疾病的结局在很大程度上得到了综述。

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