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Roles of Pyruvate NADH and Mitochondrial Complex I in Redox Balance and Imbalance in β Cell Function and Dysfunction

机译:丙酮酸NADH和线粒体复合体I在氧化还原平衡和β细胞功能和功能障碍失衡中的作用

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摘要

Pancreatic β cells not only use glucose as an energy source, but also sense blood glucose levels for insulin secretion. While pyruvate and NADH metabolic pathways are known to be involved in regulating insulin secretion in response to glucose stimulation, the roles of many other components along the metabolic pathways remain poorly understood. Such is the case for mitochondrial complex I (NADH/ubiquinone oxidoreductase). It is known that normal complex I function is absolutely required for episodic insulin secretion after a meal, but the role of complex I in β cells in the diabetic pancreas remains to be investigated. In this paper, we review the roles of pyruvate, NADH, and complex I in insulin secretion and hypothesize that complex I plays a crucial role in the pathogenesis of β cell dysfunction in the diabetic pancreas. This hypothesis is based on the establishment that chronic hyperglycemia overloads complex I with NADH leading to enhanced complex I production of reactive oxygen species. As nearly all metabolic pathways are impaired in diabetes, understanding how complex I in the β cells copes with elevated levels of NADH in the diabetic pancreas may provide potential therapeutic strategies for diabetes.
机译:胰腺β细胞不仅利用葡萄糖作为能量来源,而且还感知血糖水平以分泌胰岛素。尽管已知丙酮酸和NADH代谢途径参与响应葡萄糖刺激而调节胰岛素分泌,但沿代谢途径的许多其他成分的作用仍知之甚少。线粒体复合物I(NADH /泛醌氧化还原酶)就是这种情况。众所周知,饭后阵发性胰岛素分泌绝对需要正常的复合物I功能,但是,糖尿病胰脏β细胞中复合物I的作用尚待研究。在本文中,我们综述了丙酮酸,NADH和复合物I在胰岛素分泌中的作用,并假设复合物I在糖尿病胰腺β细胞功能障碍的发病机理中起着至关重要的作用。该假设基于以下事实:慢性高血糖使NA中的复合物I过载,导致复合物I产生的活性氧增加。由于糖尿病几乎所有的代谢途径都受到损害,因此了解β细胞中的复合物I如何应对糖尿病胰腺中NADH水平升高可能为糖尿病提供了潜在的治疗策略。

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