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Titration of mitochondrial fusion rescues Mff-deficient cardiomyopathy.

Hsiuchen Chen | Shuxun Ren | Clary Clish | Mohit Jain | Vamsi Mootha | J Michael McCaffery | David C Chan
The Journal of cell biology | 2015

Defects in mitochondrial fusion or fission are associated with many pathologies, raising the hope that pharmacological manipulation of mitochondrial dynamics may have therapeutic benefit. This approach assumes that organ physiology can be restored by rebalancing mitochondrial dynamics, but this concept remains to be validated. We addressed this issue by analyzing mice deficient in Mff, a protein important for mitochondrial fission. Mff mutant mice die at 13 wk as a result of severe dilated cardiomyopathy leading to heart failure. Mutant tissue showed reduced mitochondrial density and respiratory chain activity along with increased mitophagy. Remarkably, concomitant deletion of the mitochondrial fusion gene Mfn1 completely rescued heart dysfunction, life span, and respiratory chain function. Our results show for the first time that retuning the balance of mitochondrial fusion and fission can restore tissue integrity and mitochondrial physiology at the whole-organ level. Examination of liver, testis, and cerebellum suggest, however, that the precise balance point of fusion and fission is cell type specific.

Pubmed ID: 26598616

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM062967
  • Agency: NIGMS NIH HHS, United States
    Id: R01GM062967

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