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Opa1和MT-Nd6突变在遗传性视神经病变小鼠模型的视网膜和视神经层前区诱导早期线粒体变化。

Opa1 and MT-Nd6 mutations induce early mitochondrial changes in the retina and prelaminar optic nerve of hereditary optic neuropathy mouse models.

作者信息

Bureau Jacques, Manero Florence, Baris Olivier, Bodin Alexia, Verny Christophe, Chevrollier Arnaud, Lenaers Guy, Codron Philippe

机构信息

Laboratoire de neurobiologie et neuropathologie, Centre Hospitalier Universitaire d'Angers, 49933 Angers, France.

University of Angers, Equipe MitoLab, Unité MitoVasc, INSERM U1083, CNRS 6015, SFR ICAT, 49933 Angers, France.

出版信息

Brain Commun. 2024 Nov 13;6(6):fcae404. doi: 10.1093/braincomms/fcae404. eCollection 2024.

Abstract

Hereditary optic neuropathies, including dominant optic atrophy and Leber's hereditary optic neuropathy, are genetic disorders characterized by retinal ganglion cell degeneration leading to vision loss, mainly associated with mitochondrial dysfunction. In this study, we analysed mitochondrial distribution and ultrastructure in the retina and longitudinal optic nerve sections of pre-symptomatic hereditary optic neuropathies mouse models with Opa1 and Nd6 deficiency to identify early mitochondrial changes. Our results show significant mitochondrial fragmentation and increased mitophagy in mice, indicating early mitochondrial changes prior to neuronal loss. Conversely, mice exhibited mitochondrial hypertrophy, suggesting an adaptive response to compensate for altered energy metabolism. These pre-symptomatic mitochondrial changes were mainly observed in the unmyelinated portion of the retinal ganglion cell axons, where the transmission of the visual information requires high energy expenditure, constituting the specific point of vulnerability in hereditary optic neuropathies. These findings highlight early focal mitochondrial changes prior to neuronal loss in hereditary optic neuropathies and provide insight into pre-symptomatic therapeutic approaches.

摘要

遗传性视神经病变,包括显性视神经萎缩和Leber遗传性视神经病变,是一种以视网膜神经节细胞变性导致视力丧失为特征的遗传性疾病,主要与线粒体功能障碍有关。在本研究中,我们分析了有Opa1和Nd6缺陷的症状前遗传性视神经病变小鼠模型的视网膜和纵向视神经切片中的线粒体分布和超微结构,以确定早期线粒体变化。我们的结果显示,小鼠线粒体显著碎片化且线粒体自噬增加,表明在神经元丧失之前就出现了早期线粒体变化。相反,小鼠表现出线粒体肥大,表明这是一种为补偿能量代谢改变而产生的适应性反应。这些症状前线粒体变化主要出现在视网膜神经节细胞轴突的无髓鞘部分,视觉信息的传递在此处需要大量能量消耗,这构成了遗传性视神经病变中的特定脆弱点。这些发现突出了遗传性视神经病变中神经元丧失之前早期的局部线粒体变化,并为症状前治疗方法提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06da/11630736/2dd167169b9c/fcae404_ga.jpg

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