4.7 Article

FV-429 induces autophagy blockage and lysosome-dependent cell death of T-cell malignancies via lysosomal dysregulation

期刊

CELL DEATH & DISEASE
卷 12, 期 1, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41419-021-03394-4

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资金

  1. Nation Natural Science Foundation of China [81873046, 81830105, 81903647, 81503096, 81673461]
  2. Drug Innovation Major Project [2017ZX09301014, 2018ZX09711001-003-007, 2017ZX09101003-005-023]
  3. Natural Science Foundation of Jiangsu province [BK20190560, BE2018711]
  4. Nanjing Medical Science and Technology Development Project [YKK17074, YKK19064]
  5. Research and Innovation Project for College Graduates of Jiangsu Province [KYCX18_0803]
  6. China Postdoctoral Science Foundation [2018M642373]
  7. Double First-Class University project [CPU 2018GF11, CPU2018GF05]

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FV-429 inhibits autophagy flux and lysosomal degradation in T-cell malignancies, leading to lysosomal dysregulation. It also sensitizes cancer cells to chemotherapy agents, indicating potential as a novel autophagy inhibitor with significant antitumor efficacy.
It is widely accepted that lysosomes are essential for cell homeostasis, and autophagy plays an important role in tumor development. Here, we found FV-429, a synthetic flavonoid compound, inhibited autophagy flux, promoted autophagosomes accumulation, and inhibited lysosomal degradation in T-cell malignancies. These effects were likely to be achieved by lysosomal dysregulation. The destructive effects of FV-429 on lysosomes resulted in blockage of lysosome-associated membrane fusion, lysosomal membrane permeabilization (LMP), and cathepsin-mediated caspase-independent cell death (CICD). Moreover, we initially investigated the effects of autophagy inhibition by FV-429 on the therapeutic efficacy of chemotherapy and found that FV-429 sensitized cancer cells to chemotherapy agents. Our findings suggest that FV-429 could be a potential novel autophagy inhibitor with notable antitumor efficacy as a single agent.

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