双重麻烦突变是严重形式的沙科-玛丽-图斯病线粒体动力学紊乱的基础

Angela Puma, Samuel Guilbault, Emmanuelle C Genin, Christophe Duranton, Isabelle Rubera, Nathalie Bonello-Palot, Véronique Paquis-Flucklinger, Sabrina Sacconi, Saïd Bendahhou
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摘要

charco - marie - tooth病2A型(CMT2A)是一种遗传性轴突周围神经病变,主要由编码MFN2蛋白的基因突变引起,MFN2蛋白是一种参与线粒体动力学和生物能量学的GTPase。我们发现了一种新的突变,遗传自她的母亲,在沙科-玛丽-图斯患者的MFN2蛋白(Met234Ile)中。她还从父亲那里遗传了编码外周髓鞘蛋白22的PMP22基因的一种不确定意义的变体(Thr36Ala)。患者表现为严重的感觉运动神经病变,发病早。母亲表现为腿部远端肌肉萎缩,父亲无症状。为了显示这些突变的致病性,我们对先证者及其父母培养的原代成纤维细胞的结构、三磷酸腺苷(ATP)含量、生物电特性和线粒体功能进行了表征。在正常培养条件下,线粒体形态正常。在氧化应激条件下,ATP的产生减少,先证细胞线粒体融合减少,连接网络小,线粒体体积减少。只有当细胞在有氧环境中受到挑战时,线粒体网络才会发生改变,这证明了线粒体的脆弱性,线粒体无法满足神经元的代谢需要。有趣的是,来自父母双方的成纤维细胞没有显示出任何变化。这些结果支持了MFN2基因突变改变线粒体生物能量和融合导致轴突感觉-运动神经病变的假设。我们推测PMP22可能促进线粒体功能障碍,髓磷脂在线粒体代谢中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Double Trouble Mutations Underlie Mitochondrial Dynamics Disorders in a Severe Form of Charcot-Marie-Tooth Disease
Charcot-Marie-Tooth disease type 2A (CMT2A) is an inherited axonal peripheral neuropathy mainly caused by mutations in the mitofusin 2 (MFN2) gene encoding for the MFN2 protein, a GTPase involved in the mitochondrial dynamics and bioenergetics. We identified a novel mutation, that was inherited from her mother, in the MFN2 protein (Met234Ile) in a Charcot-Marie-Tooth patient. She has also a variant of uncertain significance (Thr36Ala), in the PMP22 gene, encoding for peripheral myelin protein 22, inherited from her father. The patient presented severe sensorimotor neuropathy with early onset. The mother presented a distal muscle atrophy in the legs, the father was asymptomatic. To show the pathogenicity of these mutations, we characterized the structure, adenosine triphosphate (ATP) content, bioelectric characteristics and functions of mitochondria in cultured primary fibroblasts obtained from the proband and her parents. Under normal culture conditions, mitochondria showed normal morphology. Under oxidative stress conditions, ATP production was reduced and the proband cells showed a decrease of the mitochondrial fusion with small connected networks and a decrease of the mitochondrial volume. The alteration of the mitochondrial network only when cells are challenged in aerobiosis testifies to the fragility of mitochondria, which are unable to meet the metabolic needs of neurons. Interestingly, fibroblasts derived from the two parents did not show any change. These results support the hypothesis that the mutation in the MFN2 gene altering mitochondrial bioenergetics and fusion causes axonal sensory-motor neuropathy. We speculate that PMP22 may promote mitochondrial dysfunction, myelin having a role in mitochondrial metabolism.
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