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Leber遗传性视神经病变:11778/ND4和3460/ND1突变的生化效应及其与线粒体基因型的相关性

Leber's hereditary optic neuropathy: biochemical effect of 11778/ND4 and 3460/ND1 mutations and correlation with the mitochondrial genotype.

作者信息

Carelli V, Ghelli A, Ratta M, Bacchilega E, Sangiorgi S, Mancini R, Leuzzi V, Cortelli P, Montagna P, Lugaresi E, Degli Esposti M

机构信息

Istituto di Clinica Neurologica, Università di Bologna, Italy.

出版信息

Neurology. 1997 Jun;48(6):1623-32. doi: 10.1212/wnl.48.6.1623.

Abstract

To clarify the bioenergetic relevance of mtDNA mutations in Leber's hereditary optic neuropathy (LHON), we investigated affected individuals and healthy carriers from six Italian LHON families harboring the 11778/ND4 and the 3460/ND1 mtDNA mutations. The enzymatic activities of mitochondrial complex I and its sensitivity to the potent inhibitors rotenone and rolliniastatin-2 were studied in mitochondrial particles from platelets, in correlation with mtDNA analysis of platelets and leukocytes. In platelets homoplasmic for mutant mtDNA, both 11778/ND4 and 3460/ND1 mutations induced resistance to rotenone and the 3460/ND1 mutation also provoked a marked decrease in the specific activity of complex I. Individuals heteroplasmic in platelets for either mutation showed normal biochemical features, indicating functional complementation of wild-type mtDNA. There was no correlation between the clinical status and mtDNA homo/heteroplasmy in platelets, but the biochemical features correlated with the mitochondrial genotype of platelets. In some cases, the degree of mtDNA heteroplasmy differed in platelets and leukocytes from the same individual with a prevalence of wild-type mtDNA in the platelets. These results imply that biochemical studies on mitochondrial diseases should always be integrated with mtDNA analysis of the same tissue investigated and also suggest that the mtDNA analysis on the leukocyte fraction, as usually performed in LHON, does not necessarily reflect the mutant genotype level of other tissues. The differential tissue heteroplasmy may be more relevant than previously thought in determining disease penetrance.

摘要

为阐明线粒体DNA(mtDNA)突变在Leber遗传性视神经病变(LHON)中的生物能量学相关性,我们研究了来自六个携带11778/ND4和3460/ND1 mtDNA突变的意大利LHON家族的患者及健康携带者。研究了血小板线粒体颗粒中线粒体复合体I的酶活性及其对强效抑制剂鱼藤酮和罗利抑素-2的敏感性,并与血小板和白细胞的mtDNA分析相关联。在mtDNA为纯合突变型的血小板中,11778/ND4和3460/ND1突变均诱导了对鱼藤酮的抗性,并且3460/ND1突变还导致复合体I的比活性显著降低。血小板中任一突变呈杂合状态的个体表现出正常的生化特征,表明野生型mtDNA具有功能互补性。血小板的临床状态与mtDNA的同质性/异质性之间没有相关性,但生化特征与血小板的线粒体基因型相关。在某些情况下,同一患者的血小板和白细胞中的mtDNA异质性程度不同,血小板中野生型mtDNA占优势。这些结果表明,对线粒体疾病的生化研究应始终与所研究的同一组织的mtDNA分析相结合,并且还表明,LHON中通常进行的白细胞部分的mtDNA分析不一定反映其他组织的突变基因型水平。在决定疾病外显率方面,不同组织的异质性可能比以前认为的更为重要。

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