SIRT3 Deacetylates and Activates OPA1 To Regulate Mitochondrial Dynamics during Stress
SIRT3 Deacetylates and Activates OPA1 To Regulate Mitochondrial Dynamics during Stress
Mitochondrial morphology is regulated by the balance between two counteracting mitochondrial processes of fusion and fission. There is significant evidence suggesting a stringent association between morphology and bioenergetics of mitochondria. Morphological alterations in mitochondria are linked to several pathological disorders, including cardiovascular diseases. The consequences of stress-induced acetylation of mitochondrial proteins on the organelle morphology remain largely unexplored. Here we report that OPA1, a mitochondrial fusion protein, was hyperacetylated in hearts under pathological stress and this posttranslational modification reduced the GTPase activity of the protein. The mitochondrial deacetylase SIRT3 was capable of deacetylating OPA1 and elevating its GTPase activity. Mass spectrometry and mutagenesis analyses indicated that in SIRT3-deficient cells OPA1 was acetylated at lysine 926 and 931 residues. Overexpression of a deacetylation-mimetic version of OPA1 recovered the mitochondrial functions of OPA1-null cells, thus demonstrating the functional significance of K926/931 acetylation in regulating OPA1 activity. Moreover, SIRT3-dependent activation of OPA1 contributed to the preservation of mitochondrial networking and protection of cardiomyocytes from doxorubicin-mediated cell death. In summary, these data indicated that SIRT3 promotes mitochondrial function not only by regulating activity of metabolic enzymes, as previously reported, but also by regulating mitochondrial dynamics by targeting OPA1.
- University of Illinois at Chicago United States
- University of Chicago United States
- California Institute of Technology United States
- Queen's University Canada
- Howard Hughes Medical Institute United States
570, Cell Death, Acetylation, Heart, Mice, Transgenic, 612, Fibroblasts, Mitochondrial Dynamics, GTP Phosphohydrolases, Mitochondria, Mitochondrial Proteins, Mice, Cell Line, Tumor, Sirtuin 3, Animals, Humans, Myocytes, Cardiac, Protein Processing, Post-Translational, Cells, Cultured, HeLa Cells
570, Cell Death, Acetylation, Heart, Mice, Transgenic, 612, Fibroblasts, Mitochondrial Dynamics, GTP Phosphohydrolases, Mitochondria, Mitochondrial Proteins, Mice, Cell Line, Tumor, Sirtuin 3, Animals, Humans, Myocytes, Cardiac, Protein Processing, Post-Translational, Cells, Cultured, HeLa Cells
7 Research products, page 1 of 1
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
- 2017IsRelatedTo
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).350 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 0.1% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Top 10% impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Top 1%
