4.8 Article

Dysregulation of mitochondrial dynamics proteins are a targetable feature of human tumors

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-04033-x

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资金

  1. Duke University School of Medicine start-up funds
  2. NIH Building Interdisciplinary Research Careers in Women's Health (BIRCWH) Program [K12HD043446]
  3. Liz Tilberis Early Career Award from the Ovarian Cancer Research Fund Alliance
  4. Department of Defense Breast Cancer Research Program Breakthrough Award [W81XWH-16-1-0703]
  5. NIH award [R01CA207083]
  6. National Science Foundation Graduate Research Fellowship Program [DGE-1106401]
  7. NIH/NCI Pre-to-Postdoctoral Transition Award [1F99CA222728]
  8. EUNICE KENNEDY SHRIVER NATIONAL INSTITUTE OF CHILD HEALTH & HUMAN DEVELOPMENT [K12HD043446] Funding Source: NIH RePORTER
  9. NATIONAL CANCER INSTITUTE [F99CA222728, R01CA207083, K00CA222728] Funding Source: NIH RePORTER

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Altered mitochondrial dynamics can broadly impact tumor cell physiology. Using genetic and pharmacological profiling of cancer cell lines and human tumors, we here establish that perturbations to the mitochondrial dynamics network also result in specific therapeutic vulnerabilities. In particular, through distinct mechanisms, tumors with increased mitochondrial fragmentation or connectivity are hypersensitive to SMAC mimetics, a class of compounds that induce apoptosis through inhibition of IAPs and for which robust sensitivity biomarkers remain to be identified. Further, because driver oncogenes exert dominant control over mitochondrial dynamics, oncogene-targeted therapies can be used to sensitize tumors to SMAC mimetics via their effects on fission/fusion dynamics. Collectively, these data demonstrate that perturbations to the mitochondrial dynamics network induce targetable vulnerabilities across diverse human tumors and, more broadly, suggest that the altered structures, activities, and trafficking of cellular organelles may facilitate additional cancer therapeutic opportunities.

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