TY - JOUR
T1 - Ketogenic diet slows down mitochondrial myopathy progression in mice
AU - Ahola-Erkkilä, Sofia
AU - Carroll, Christopher J
AU - Peltola-Mjösund, Katja
AU - Tulkki, Valtteri
AU - Mattila, Ismo
AU - Seppänen-Laakso, Tuulikki
AU - Oresic, Matej
AU - Tyynismaa, Henna
AU - Suomalainen, Anu
PY - 2010/5/15
Y1 - 2010/5/15
N2 - Mitochondrial dysfunction is a major cause of neurodegenerative and neuromuscular diseases of adult age and of multisystem disorders of childhood. However, no effective treatment exists for these progressive disorders. Cell culture studies suggested that ketogenic diet (KD), with low glucose and high fat content, could select against cells or mitochondria with mutant mitochondrial DNA (mtDNA), but proper patient trials are still lacking. We studied here the transgenic Deletor mouse, a disease model for progressive late-onset mitochondrial myopathy, accumulating mtDNA deletions during aging and manifesting subtle progressive respiratory chain (RC) deficiency. We found that these mice have widespread lipidomic and metabolite changes, including abnormal plasma phospholipid and free amino acid levels and ketone body production. We treated these mice with pre-symptomatic long-term and post-symptomatic shorter term KD. The effects of the diet for disease progression were followed by morphological, metabolomic and lipidomic tools. We show here that the diet decreased the amount of cytochrome c oxidase negative muscle fibers, a key feature in mitochondrial RC deficiencies, and prevented completely the formation of the mitochondrial ultrastructural abnormalities in the muscle. Furthermore, most of the metabolic and lipidomic changes were cured by the diet to wild-type levels. The diet did not, however, significantly affect the mtDNA quality or quantity, but rather induced mitochondrial biogenesis and restored liver lipid levels. Our results show that mitochondrial myopathy induces widespread metabolic changes, and that KD can slow down progression of the disease in mice. These results suggest that KD may be useful for mitochondrial late-onset myopathies.
AB - Mitochondrial dysfunction is a major cause of neurodegenerative and neuromuscular diseases of adult age and of multisystem disorders of childhood. However, no effective treatment exists for these progressive disorders. Cell culture studies suggested that ketogenic diet (KD), with low glucose and high fat content, could select against cells or mitochondria with mutant mitochondrial DNA (mtDNA), but proper patient trials are still lacking. We studied here the transgenic Deletor mouse, a disease model for progressive late-onset mitochondrial myopathy, accumulating mtDNA deletions during aging and manifesting subtle progressive respiratory chain (RC) deficiency. We found that these mice have widespread lipidomic and metabolite changes, including abnormal plasma phospholipid and free amino acid levels and ketone body production. We treated these mice with pre-symptomatic long-term and post-symptomatic shorter term KD. The effects of the diet for disease progression were followed by morphological, metabolomic and lipidomic tools. We show here that the diet decreased the amount of cytochrome c oxidase negative muscle fibers, a key feature in mitochondrial RC deficiencies, and prevented completely the formation of the mitochondrial ultrastructural abnormalities in the muscle. Furthermore, most of the metabolic and lipidomic changes were cured by the diet to wild-type levels. The diet did not, however, significantly affect the mtDNA quality or quantity, but rather induced mitochondrial biogenesis and restored liver lipid levels. Our results show that mitochondrial myopathy induces widespread metabolic changes, and that KD can slow down progression of the disease in mice. These results suggest that KD may be useful for mitochondrial late-onset myopathies.
KW - Animals
KW - DNA, Mitochondrial/genetics
KW - Diet, Ketogenic
KW - Disease Progression
KW - Electron Transport Complex IV/metabolism
KW - Female
KW - Gene Dosage/genetics
KW - Lipid Metabolism/genetics
KW - Liver/pathology
KW - Male
KW - Metabolomics
KW - Mice
KW - Mice, Inbred C57BL
KW - Mice, Transgenic
KW - Mitochondria/enzymology
KW - Mitochondrial Myopathies/prevention & control
KW - Muscle Fibers, Skeletal/enzymology
KW - Obesity/pathology
KW - Phenotype
KW - Sequence Deletion/genetics
U2 - 10.1093/hmg/ddq076
DO - 10.1093/hmg/ddq076
M3 - Journal article
C2 - 20167576
SN - 0964-6906
VL - 19
SP - 1974
EP - 1984
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 10
ER -