The Department of ophthalmology, Eye center of the 2nd Affiliated Hospital, Medical College of Zhejiang University, Hangzhou, 310009, China.
The Department of ophthalmology of the 4th Affiliated Hospital, China Medical University, Shenyang, 110005, China.
Sci Rep. 2018 Jan 24;8(1):1522. doi: 10.1038/s41598-018-19849-2.
Inherited mitochondrial mutations can result in mitochondrial dysfunction or stochastic oxidative damage. Cumulative mitochondrial damage is an important factor in age-related disorders, such as cataracts and macular degeneration. Mfn2 mediates the fusion of mitochondria and contribute to the dynamic balance between fusion and fission that determines mitochondria morphology. We report here that conditional loss of Mfn2 function in the head surface ectoderm leads to a range of congenital eye defects, including small, opacified lens and small eyeball in the most severe phenotypes. The Le-Cre transgenic mouse line and Mfn2 flox mouse line were used in this study to generate Mfn2 conditional knockout mice. Our study revealed Mfn2 gene function in lens development and addressed the relationship between the mitochondria and lens transparency. Conditional loss of Mfn2 affected lens epithelium cell proliferation, apoptosis and ultrastructure of mitochondria. We conclude that proper development of the lens and lens transparency depend on normal Mfn2 gene function.
遗传的线粒体突变可导致线粒体功能障碍或随机氧化损伤。线粒体的累积损伤是年龄相关性疾病(如白内障和黄斑变性)的一个重要因素。Mfn2 介导线粒体的融合,并有助于融合和裂变之间的动态平衡,从而决定线粒体的形态。我们在这里报告,在头部表皮外胚层中条件性缺失 Mfn2 功能会导致一系列先天性眼部缺陷,包括最严重表型中的小、混浊晶状体和小眼球。本研究使用 Le-Cre 转基因小鼠系和 Mfn2 flox 小鼠系来生成 Mfn2 条件性敲除小鼠。我们的研究揭示了 Mfn2 基因在晶状体发育中的功能,并探讨了线粒体与晶状体透明度之间的关系。Mfn2 的缺失会影响晶状体上皮细胞的增殖、凋亡和线粒体的超微结构。我们得出结论,晶状体的正常发育和透明度取决于正常的 Mfn2 基因功能。