4.3 Article

Mitochondrial targeted HSP90 inhibitor Gamitrinib-TPP (G-TPP) induces PINK1/Parkin-dependent mitophagy

期刊

ONCOTARGET
卷 8, 期 63, 页码 106233-106248

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.22287

关键词

PINK1; parkin; mitophagy; mitochondrial UPR; Gamitrinib

资金

  1. American Parkinson's Disease Association (APDA) stipend
  2. Younkin Scholar program
  3. NIH/NINDS [R01NS085070]
  4. Michael J. Fox Foundation for Parkinson's Research
  5. Foundation for Mitochondrial Medicine
  6. Mayo Clinic Foundation
  7. Center for Individualized Medicine (CIM)
  8. Center for Regenerative Medicine (CRM)
  9. Center for Biomedical Discovery (CBD)
  10. Neuroscience Focused Research Team (NFRT) Award
  11. Marriott Family Foundation
  12. Gerstner Family Career Development Award

向作者/读者索取更多资源

Loss-of-function mutations in PINK1 or PARKIN are associated with earlyonset Parkinson's disease. Upon mitochondrial stress, PINK1 and Parkin together mediate a response that protects cells from the accumulation of harmful, damaged mitochondria. PINK1, the upstream kinase accumulates on the mitochondrial surface and recruits the E3 ubiquitin ligase Parkin on site to ubiquitylate substrate proteins. The joint activity of both to generate phosphorylated poly-ubiquitin chains on the mitochondrial surface induces the recruitment of autophagy receptors and eventually whole organelles are cleared by autophagy. While this pathway is generally accepted to occur upon chemical uncoupling of mitochondria, the (patho-) physiologic relevance has been questioned. However, few studies have indicated that PINK1 and Parkin are also activated upon accumulation of misfolded proteins in the mitochondrial lumen upon overexpression of.OTC (Ornithine transcarbamylase). Here, we used the mitochondrial targeted HSP90 inhibitor Gamitrinib-triphenylphosphonium (G-TPP), an anti-cancer agent, to chemically interfere with mitochondrial protein folding. G-TPP treatment induced PINK1 accumulation, ubiquitin phosphorylation at Ser65, Parkin activation and its recruitment to mitochondria was specific for mitochondrial HSP90 inhibition and largely independent of mitochondrial membrane depolarization. Mitophagy induction was observed by monitoring autophagy receptor recruitment and the mitoKeima reporter. Importantly, mitophagy was not only induced in cancer cells but also in primary human fibroblasts and thereof converted neurons. G-TPP treatment might represent a novel strategy to study PINK1 and Parkin-mediated mitochondrial quality control using a more physiologically relevant stress.

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