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OPA1 deficiency associated with increased autophagy in retinal ganglion cells in a murine model of dominant optic atrophy

机译:在显性视神经萎缩的小鼠模型中,OPA1缺乏与视网膜神经节细胞自噬增加有关

摘要

purpose. To examine retinal ganglion cell (RGC) and axonal abnormalities in an ENU-induced mutant mouse carrying a protein-truncating nonsense mutation in OPA1. Mutations in the OPA1 gene cause autosomal dominant optic atrophy (ADOA) in which loss of RGCs followed by myelin degeneration in the optic nerve leads to progressive decrease in visual acuity. ududmethods. Ultrastructure of the optic nerve was examined in heterozygous mutants and wild-type littermate controls at 6, 9, and 24 months using electron microscopy. The RGC layer was examined at 6 and 24 months. ududresults. There was an increase in the number of autophagosomes in the RGC layer in heterozygous mutants compared with wild type at 24 months. Signs of optic nerve degeneration were seen as early as 9 months in Opa1+/− mice, with more severe degeneration by 24 months. By 24 months, degeneration of axons was also seen in control mice. Numbers of opaque mitochondria in the Opa1+/− mice increased at 6 and 24 months, possibly representing an increase in the density of cristae to fulfill the energy requirements of the axon. In addition, mitochondria with vesiculation of the inner membranes, similar to the mutant mitochondria described in a mouse model of Charcot-Marie-Tooth type 2A, were observed. ududconclusions. Mutations in OPA1 cause pathologic changes to optic nerve axons that are similar to, but occur earlier than, age-related degeneration. Increased autophagy is likely to result from an increase in abnormal mitochondria and could be one mechanism contributing to RGC loss and subsequent optic atrophy seen in ADOA.
机译:目的。若要检查视网膜神经节细胞(RGC)和轴突异常,在ENU诱导的突变小鼠中携带OPA1中的蛋白截短性无义突变。 OPA1基因的突变会导致常染色体显性视神经萎缩(ADOA),其中RGC缺失,继而视神经中髓磷脂变性导致视力进行性降低。 ud udmethods。使用电子显微镜检查在第6、9和24个月的杂合突变体和野生型同窝对照中的视神经超微结构。在6个月和24个月时检查了RGC层。 ud udresults。与野生型相比,杂合突变体中RGC层中自噬体的数量在24个月时有所增加。在Opa1 +/-小鼠中,早在9个月就出现了视神经变性的迹象,到24个月时出现了更为严重的变性。到24个月时,在对照小鼠中也观察到轴突变性。在6和24个月时,Opa1 +/-小鼠中不透明线粒体的数量增加,这可能表示满足轴突能量需求的ista密度增加。另外,观察到具有内膜囊泡的线粒体,类似于在Charcot-Marie-Tooth 2A型小鼠模型中描述的突变型线粒体。 ud ud结论。 OPA1突变会导致视神经轴突的病理变化,与年龄相关性变性相似,但发生时间较早。自噬的增加可能是由于异常线粒体的增加而引起的,并且可能是导致RGC丢失和随后在ADOA中出现视神经萎缩的一种机制。

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