Infantile encephalopathy and defective mitochondrial DNA translation in patients with mutations of mitochondrial elongation factors EFG1 and EFTu

被引:169
作者
Valente, Lucia
Tiranti, Valeria
Marsano, Rene Massimiliano
Malfatti, Edoardo
Fernandez-Vizarra, Erika
Donnini, Claudia
Mereghetti, Paolo
De Gioia, Luca
Burlina, Alberto
Castellan, Claudio
Comi, Giacomo P.
Savasta, Salvatore
Ferrero, Iliana
Zeviani, Massimo
机构
[1] IRCCS Fdn, Natl Neurol Inst Carlo Besta, Div Mol Neurogenet, Pierfranco & Luisa Mariani Ctr Res Childrens Mito, I-20126 Milan, Italy
[2] Univ Milan, Dept Biosci & Biotechnol, Milan, Italy
[3] Univ Milan, Osped Maggiore Policlin, IRCCS Fdn, Dept Neurol Sci,Dino Ferrari Ctr, Milan, Italy
[4] Univ Parma, Dept Genet Biol Microrganisms Anthropol & Evolut, I-43100 Parma, Italy
[5] Univ Siena, Dept Neurol, I-53100 Siena, Italy
[6] Univ Padua, Dept Paediat, Padua, Italy
[7] Reg Publ Hlth Hosp, Serv Genet, Bolzano, Italy
[8] Univ Pavia, Dept Paediat, I-27100 Pavia, Italy
关键词
D O I
10.1086/510559
中图分类号
Q3 [遗传学];
学科分类号
071007 [遗传学]; 090102 [作物遗传育种];
摘要
Mitochondrial protein translation is a complex process performed within mitochondria by an apparatus composed of mitochondrial DNA (mtDNA)-encoded RNAs and nuclear DNA -encoded proteins. Although the latter by far outnumber the former, the vast majority of mitochondrial translation defects in humans have been associated with mutations in RNA-encoding mtDNA genes, whereas mutations in protein-encoding nuclear genes have been identified in a handful of cases. Genetic investigation involving patients with defective mitochondrial translation led us to the discovery of novel mutations in the mitochondrial elongation factor G1 (EFG1) in one affected baby and, for the first time, in the mitochondrial elongation factor Tu (EFTu) in another one. Both patients were affected by severe lactic acidosis and rapidly progressive, fatal encephalopathy. The EFG1-mutant patient had early-onset Leigh syndrome, whereas the EFTu-mutant patient had severe infantile macrocystic leukodystrophy with micropolygyria. Structural modeling enabled us to make predictions about the effects of the mutations at the molecular level. Yeast and mammalian cell systems proved the pathogenic role of the mutant alleles by functional complementation in vivo. Nuclear-gene abnormalities causing mitochondrial translation defects represent a new, potentially broad field of mitochondrial medicine. Investigation of these defects is important to expand the molecular characterization of mitochondrial disorders and also may contribute to the elucidation of the complex control mechanisms, which regulate this fundamental pathway of mtDNA homeostasis.
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页码:44 / 58
页数:15
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