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Pathological Significance of Mitochondrial Glycation

机译:线粒体糖化的病理意义

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摘要

Glycation, the nonenzymatic glycosylation of biomolecules, is commonly observed in diabetes and ageing. Reactive dicarbonyl species such as methylglyoxal and glyoxal are thought to be major physiological precursors of glycation. Because these dicarbonyls tend to be formed intracellularly, the levels of advanced glycation end products on cellular proteins are higher than on extracellular ones. The formation of glycation adducts within cells can have severe functional consequences such as inhibition of protein activity and promotion of DNA mutations. Although several lines of evidence suggest that there are specific mitochondrial targets of glycation, and mitochondrial dysfunction itself has been implicated in disease and ageing, it is unclear if glycation of biomolecules specifically within mitochondria induces dysfunction and contributes to disease pathology. We discuss here the possibility that mitochondrial glycation contributes to disease, focussing on diabetes, ageing, cancer, and neurodegeneration, and highlight the current limitations in our understanding of the pathological significance of mitochondrial glycation.
机译:糖化,生物分子的非酶糖基化通常在糖尿病和老化中观察到。被认为是甲基乙二醛和乙二醛等反应性二羰基物种是糖化的主要生理前体。因为这些二羰基倾向于细胞内形成,所以细胞蛋白质上的晚期糖化末端产物的水平高于细胞外蛋白质。细胞内的糖化加合物的形成可具有严重的功能后果,例如抑制蛋白质活性和促进DNA突变。虽然有几种证据表明存在甘露解金的特异性线粒体靶,但线粒体功能障碍本身涉及疾病和衰老,尚不清楚是否在线粒体中特别促进生物分子的糖化诱导功能障碍并有助于疾病病理。我们在此讨论线粒体糖类​​促进疾病的可能性,侧重于糖尿病,衰老,癌症和神经变性,并突出了我们对线粒体糖化的病理意义的目前的限制。

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