| Literature DB >> 26370078 |
Thomas J Cahill1, Vincenzo Leo2, Matthew Kelly1, Alexander Stockenhuber1, Nolan W Kennedy3, Leyuan Bao4, Grazia M Cereghetti5, Andrew R Harper1, Gabor Czibik1, Chunyan Liao6, Mohamed Bellahcene1, Violetta Steeples1, Safar Ghaffari1, Arash Yavari1, Alice Mayer4, Joanna Poulton6, David J P Ferguson7, Luca Scorrano5, Nishani T Hettiarachchi8, Chris Peers8, John Boyle8, R Blake Hill3, Alison Simmons4, Hugh Watkins1, T Neil Dear2, Houman Ashrafian9.
Abstract
We have reported previously that a missense mutation in the mitochondrial fission gene Dynamin-related protein 1 (Drp1) underlies the Python mouse model of monogenic dilated cardiomyopathy. The aim of this study was to investigate the consequences of the C452F mutation on Drp1 protein function and to define the cellular sequelae leading to heart failure in the Python monogenic dilated cardiomyopathy model. We found that the C452F mutation increased Drp1 GTPase activity. The mutation also conferred resistance to oligomer disassembly by guanine nucleotides and high ionic strength solutions. In a mouse embryonic fibroblast model, Drp1 C452F cells exhibited abnormal mitochondrial morphology and defective mitophagy. Mitochondria in C452F mouse embryonic fibroblasts were depolarized and had reduced calcium uptake with impaired ATP production by oxidative phosphorylation. In the Python heart, we found a corresponding progressive decline in oxidative phosphorylation with age and activation of sterile inflammation. As a corollary, enhancing autophagy by exposure to a prolonged low-protein diet improved cardiac function in Python mice. In conclusion, failure of Drp1 disassembly impairs mitophagy, leading to a downstream cascade of mitochondrial depolarization, aberrant calcium handling, impaired ATP synthesis, and activation of sterile myocardial inflammation, resulting in heart failure.Entities:
Keywords: cardiomyopathy; heart failure; mitochondria; mitochondrial metabolism; mitophagy
Mesh:
Substances:
Year: 2015 PMID: 26370078 PMCID: PMC4646246 DOI: 10.1074/jbc.M115.665695
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157