4.3 Article

Mansouramycin C kills cancer cells through reactive oxygen species production mediated by opening of mitochondrial permeability transition pore

期刊

ONCOTARGET
卷 8, 期 61, 页码 104057-104071

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.22004

关键词

mansouramycin C; marine-derived isoquinolinequinone; reactive oxygen species; mitochondrial permeability transition pore; anticancer drug

资金

  1. Qingdao National Laboratory for Marine Science and Technology [2015ASTP]
  2. Natural Science Outstanding Youth Fund of Shandong Province [JQ201607]
  3. Taishan Young Scholar Program of Shandong Province
  4. 100-Talent Project of Chinese Academy of Sciences
  5. Special Fund for Postdoctoral Innovation Project of Shandong Province [201502032]
  6. Qingdao Postdoctoral Application Research
  7. AoShan Talents Program

向作者/读者索取更多资源

Cancer is one of the deadliest diseases in the world and the search for novel anticancer agents is urgently required. Marine-derived isoquinolinequinones have exhibited promising anticancer activities. However, the exact mechanisms of cytotoxic activities of these isoquinolinequinones are poorly characterized. In this study, we investigated the anticancer effects and molecular mechanisms of mansouramycin C (Mm C), a cytotoxic isoquinolinequinone isolated from a marine streptomycete. We demonstrated that Mm C preferentially killed cancer cells and the cytotoxic effects were mediated by reactive oxygen species (ROS) generation. Mass spectrometry based proteomic analysis of Mm C-treated A549 cells revealed that many ROS-related proteins were differentially expressed. Proteomic-profiling after Mm C treatment identified oxidative phosphorylation as the most significant changes in pathways. Analysis also revealed extensive defects in mitochondrial structure and function. Furthermore, we disclosed that Mm C-induced ROS generation was caused by opening of mitochondrial permeability transition pore. Notably, Mm C synergized with sorafenib to induce cell death in A549 cells. Hence, we propose that the marine-derived natural compound Mm C is a potent inducer of the mitochondrial permeability transition and a promising anticancer drug candidate. Moreover, molecular mechanisms of Mm C shed new light on the understanding of the cytotoxic mechanisms of marine-derived isoquinolinequiones.

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