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Disruption of mitochondrial homeostasis in organic acidurias: Insights from human and animal studies

机译:有机酸尿症中线粒体稳态的破坏:来自人类和动物研究的见解

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Organic acidurias or organic acidemias constitute a group of inherited disorders caused by deficient activity of specific enzymes of amino acids, carbohydrates or lipids catabolism, leading to large accumulation and excretion of one or more carboxylic (organic) acids. Affected patients usually present neurologic symptoms and abnormalities, sometimes accompanied by cardiac and skeletal muscle alterations, whose pathogenesis is poorly known. However, in recent years growing evidence has emerged indicating that mitochondrial dysfunction is directly or indirectly involved in the pathology of various organic acidemias. Mitochondrial impairment in some of these diseases are generally due to mutations in nuclear genes of the tricarboxylic acid cycle or oxidative phosphorylation, while in others it seems to result from toxic influences of the endogenous organic acids to the mitochondrion. In this minireview, we will briefly summarize the present knowledge obtained from human and animal studies showing that disruption of mitochondrial homeostasis may represent a relevant pathomechanism of tissue damage in selective organic acidemias. The discussion will focus on mitochondrial alterations found in patients affected by organic acidemias and by the deleterious effects of the accumulating organic acids on mitochondrial pathways that are crucial for ATP formation and transfer. The elucidation of the mechanisms of toxicity of these acidic compounds offers new perspectives for potential novel adjuvant therapeutic strategies in selected disorders of this group.
机译:有机酸尿症或有机酸血症是由氨基酸,碳水化合物或脂质分解代谢的特定酶活性不足引起的一组遗传性疾病,导致一种或多种羧酸(有机)酸的大量积累和排泄。受影响的患者通常表现出神经系统症状和异常,有时伴有心脏和骨骼肌的改变,其发病机理尚不清楚。然而,近年来,越来越多的证据表明线粒体功能障碍直接或间接地参与了各种有机酸血症的病理。在某些这类疾病中,线粒体损伤通常是由于三羧酸循环的核基因突变或氧化磷酸化所致,而在其他疾病中,似乎是内源性有机酸对线粒体的毒性影响所致。在本小型回顾中,我们将简要总结从人类和动物研究中获得的当前知识,这些研究表明,线粒体体内稳态的破坏可能代表选择性有机酸血症中组织损伤的相关发病机制。讨论将集中在受有机酸血症影响的患者中发现的线粒体变化,以及有机酸蓄积对线粒体途径的有害影响,这对于ATP的形成和转移至关重要。这些酸性化合物的毒性机理的阐明为该组选定疾病中潜在的新型佐剂治疗策略提供了新的见解。

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