Biochemical analysis of respiratory function in cybrid cell lines harbouring mitochondrial DNA mutations

被引:76
作者
Pallotti, F
Baracca, A
Hernandez-Rosa, E
Walker, WF
Solaini, G
Lenaz, G
D'Eril, GVM
DiMauro, S
Schon, EA
Davidson, MM
机构
[1] Columbia Univ Coll Phys & Surg, Dept Neurol, New York, NY 10032 USA
[2] Univ Studi Insubria, Dipartimento Sci Biomed Sperimentali & Clin, I-21100 Varese, Italy
[3] Univ Studi Bologna, Dipartimento Biochim G Moruzzi, I-40126 Bologna, Italy
[4] Studi Univ Perfezionamento S Anna, Scuola Super, Pisa, Italy
[5] Columbia Univ Coll Phys & Surg, Dept Genet & Dev, New York, NY 10032 USA
关键词
ATP synthesis; cybrid; lactate; mitochondrial DNA mutation; oxygen consumption; pyruvate;
D O I
10.1042/BJ20040561
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We analysed key biochemical features that reflect the balance between glycolysis and glucose oxidation in cybrids (cytoplasmic hybrids) harbourring a representative sample of mitochondrial DNA point mutations and deletions. The cybrids analysed had the same 143B cell nuclear background and were isogenic for the mitochondrial background. The 143B cell line and its rho(0) counterpart were used as controls. All cells analysed were in a dynamic state, and cell number, time of plating, culture medium, extracellullar volume and time of harvest and assay were strictly controlled. Intra- and extra-cellular lactate and pyruvate levels were measured in homoplasmic wild-type and mutant cells, and correlated with rates of ATP synthesis and O-2 consumption. In all mutant cell lines, except those with the T8993C mutation in the ATPase 6 gene, glycolysis was increased even under conditions of low glucose, as demonstrated by increased levels of extracellular lactate and pyruvate. Extracellular lactate levels were strictly and inversely correlated with rates of ATP synthesis and O-2 consumption. These results show increased glycolysis and defective oxidative phosphorylation, irrespective of the type or site of the point mutation or deletion in the mitochondrial genome. The different biochemical consequences of the T8993C mutation suggest a uniquely different pathogenic mechanism for this mutation. However, the distinct clinical features associated with some of these mutations still remain to be elucidated.
引用
收藏
页码:287 / 293
页数:7
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