Functional mitochondrial heterogeneity in heteroplasmic cells carrying the mitochondrial DNA mutation associated with the MELAS syndrome (mitochondrial encephalopathy, lactic acidosis, and strokelike episodes)
被引:14
作者:
Bakker, A
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Bakker, A
Barthélémy, C
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Barthélémy, C
Frachon, P
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Frachon, P
Chateau, D
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Chateau, D
Sternberg, D
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Sternberg, D
Mazat, JP
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Mazat, JP
Lombès, A
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机构:INSERM, UR523, Inst Myol, F-75651 Paris, France
Lombès, A
机构:
[1] INSERM, UR523, Inst Myol, F-75651 Paris, France
[2] Hop La Salpetriere, F-75651 Paris, France
[3] Univ Bordeaux 2, INSERM E9929, F-33076 Bordeaux, France
Most mitochondrial DNA (mtDNA) alterations associated with human disorders are heteroplasmic, i.e. mutant mtDNA molecules coexist with normal ones within the cell. We addressed the possibility of intermitochondrial exchanges through histologic analyses of cybrid clones with increasing proportion of the MELAS (A3243G) mtDNA transfer RNA point mutation. MtDNA-dependent cytochrome c oxidase activity and protein composition as well as mitochondrial membrane potential appeared heterogeneous in individual cells from clonal heteroplasmic cell populations on the basis of confocal and electron microscopy. The number of defective cells increased with increasing mutation load. We conclude that in the presence of a heteroplasmic mtDNA mutation in the cell type that we studied, intermitochondrial molecular exchanges cannot provide an efficient even distribution of the complementing molecules such as wild-type mtDNA, transfer RNA, or protein. Mitochondria in these heteroplasmic cells cannot, therefore, be considered a single functional unit.