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弗里德里希共济失调中的糖尿病。

Diabetes in Friedreich ataxia.

机构信息

Laboratory of Experimental Medicine, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

J Neurochem. 2013 Aug;126 Suppl 1:94-102. doi: 10.1111/jnc.12216.

Abstract

Diabetes is a common metabolic disorder in patients with Friedreich ataxia. In this Supplement article, we review the clinical data on diabetes in Friedreich ataxia, and the experimental data from rodent and in vitro models of the disease. Increased body adiposity and insulin resistance are frequently present in Friedreich ataxia, but pancreatic β cell dysfunction and death are a conditio sine qua non for the loss of glucose tolerance and development of diabetes. The loss of frataxin function in mitochondria accounts for these pathogenic processes in Friedreich ataxia. Mitochondria are essential for the sensing of nutrients by the β cell and for the generation of signals that trigger and amplify insulin secretion, known as stimulus-secretion coupling. Moreover, in the intrinsic pathway of apoptosis, pro-apoptotic signals converge on mitochondria, resulting in mitochondrial Bax translocation, membrane permeabilization, cytochrome c release and caspase cleavage. How and at which level frataxin deficiency impacts on these processes in β cells is only partially understood. A better understanding of the molecular mechanisms mediating β cell demise in Friedreich ataxia will pave the way for new therapeutic approaches.

摘要

糖尿病是弗里德赖希共济失调患者常见的代谢紊乱。在这篇增刊文章中,我们回顾了弗里德赖希共济失调中糖尿病的临床数据,以及该疾病啮齿动物和体外模型的实验数据。肥胖和胰岛素抵抗在弗里德赖希共济失调中经常存在,但胰岛β细胞功能障碍和死亡是葡萄糖耐量丧失和糖尿病发展的必要条件。线粒体中 frataxin 功能的丧失解释了弗里德赖希共济失调中的这些致病过程。线粒体对于β细胞对营养物质的感知以及产生触发和放大胰岛素分泌的信号(称为刺激-分泌偶联)至关重要。此外,在细胞凋亡的内在途径中,促凋亡信号会聚在线粒体,导致 Bax 易位、膜通透性、细胞色素 c 释放和半胱天冬酶切割。frataxin 缺乏如何以及在哪个水平上影响β细胞中的这些过程,目前仅部分了解。更好地了解介导弗里德赖希共济失调中β细胞死亡的分子机制将为新的治疗方法铺平道路。

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