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      Parkin does not prevent accelerated cardiac aging in mitochondrial DNA mutator mice.

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          Abstract

          The E3 ubiquitin ligase Parkin plays an important role in regulating clearance of dysfunctional or unwanted mitochondria in tissues, including the heart. However, whether Parkin also functions to prevent cardiac aging by maintaining a healthy population of mitochondria is still unclear. Here, we have examined the role of Parkin in the context of mtDNA damage and myocardial aging using a mouse model carrying a proofreading defective mitochondrial DNA polymerase gamma (POLG). We observed both decreased Parkin protein levels and development of cardiac hypertrophy in POLG hearts with age; however, cardiac hypertrophy in POLG mice was neither rescued, nor worsened by cardiac specific overexpression or global deletion of Parkin, respectively. Unexpectedly, mitochondrial fitness did not substantially decline with age in POLG mice when compared to WT. We found that baseline mitophagy receptor-mediated mitochondrial turnover and biogenesis were enhanced in aged POLG hearts. We also observed the presence of megamitochondria in aged POLG hearts. Thus, these processes may limit the accumulation of dysfunctional mitochondria as well as the degree of cardiac functional impairment in the aging POLG heart. Overall, our results demonstrate that Parkin is dispensable for constitutive mitochondrial quality control in a mtDNA mutation model of cardiac aging.

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          Author and article information

          Journal
          JCI Insight
          JCI insight
          American Society for Clinical Investigation
          2379-3708
          2379-3708
          April 16 2019
          : 5
          Affiliations
          [1 ] Skaggs School of Pharmacy and Pharmaceutical Sciences and.
          [2 ] Department of Pharmacology, University of California, San Diego, La Jolla, California, USA.
          Article
          127713
          10.1172/jci.insight.127713
          6542612
          30990467
          e9f18038-c291-41db-97c4-ea489e94317e
          History

          Autophagy,Cardiology,Cell Biology,Mitochondria
          Autophagy, Cardiology, Cell Biology, Mitochondria

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