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与显性遗传性视神经萎缩相关的OPA1突变会损害氧化磷酸化和线粒体融合。

OPA1 mutations associated with dominant optic atrophy impair oxidative phosphorylation and mitochondrial fusion.

作者信息

Zanna Claudia, Ghelli Anna, Porcelli Anna Maria, Karbowski Mariusz, Youle Richard J, Schimpf Simone, Wissinger Bernd, Pinti Marcello, Cossarizza Andrea, Vidoni Sara, Valentino Maria Lucia, Rugolo Michela, Carelli Valerio

机构信息

Dipartimento di Biologia Evoluzionistica Sperimentale, Università di Bologna, Via Irnerio 42, 40126 Bologna, Italy.

出版信息

Brain. 2008 Feb;131(Pt 2):352-67. doi: 10.1093/brain/awm335.

Abstract

Dominant optic atrophy (DOA) is characterized by retinal ganglion cell degeneration leading to optic neuropathy. A subset of DOA is caused by mutations in the OPA1 gene, encoding for a dynamin-related GTPase required for mitochondrial fusion. The functional consequences of OPA1 mutations in DOA patients are still poorly understood. This study investigated the effect of five different OPA1 pathogenic mutations on the energetic efficiency and mitochondrial network dynamics of skin fibroblasts from patients. Although DOA fibroblasts maintained their ATP levels and grew in galactose medium, i.e. under forced oxidative metabolism, a significant impairment in mitochondrial ATP synthesis driven by complex I substrates was found. Furthermore, balloon-like structures in the mitochondrial reticulum were observed in galactose medium and mitochondrial fusion was completely inhibited in about 50% of DOA fibroblasts, but not in control cells. Respiratory complex assembly and the expression level of complex I subunits were similar in control and DOA fibroblasts. Co-immunoprecipitation experiments revealed that OPA1 directly interacts with subunits of complexes I, II and III, but not IV and with apoptosis inducing factor. The results disclose a novel link between OPA1, apoptosis inducing factor and the respiratory complexes that may shed some light on the pathogenic mechanism of DOA.

摘要

显性遗传性视神经萎缩(DOA)的特征是视网膜神经节细胞变性,进而导致视神经病变。一部分DOA是由OPA1基因突变引起的,该基因编码线粒体融合所需的一种与发动蛋白相关的GTP酶。目前对DOA患者中OPA1突变的功能后果仍知之甚少。本研究调查了五种不同的OPA1致病突变对患者皮肤成纤维细胞的能量效率和线粒体网络动态的影响。尽管DOA成纤维细胞在半乳糖培养基中,即在强制氧化代谢条件下,能维持其ATP水平并生长,但发现由复合体I底物驱动的线粒体ATP合成存在显著损伤。此外,在半乳糖培养基中观察到线粒体网状结构出现气球样结构,约50%的DOA成纤维细胞中的线粒体融合完全受到抑制,而对照细胞中则未出现这种情况。对照和成纤维细胞中呼吸复合体组装以及复合体I亚基的表达水平相似。免疫共沉淀实验表明,OPA1直接与复合体I、II和III的亚基相互作用,但不与复合体IV的亚基以及凋亡诱导因子相互作用。这些结果揭示了OPA1、凋亡诱导因子和呼吸复合体之间的一种新联系,这可能为DOA的致病机制提供一些线索。

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