4.8 Article

Inducing and exploiting vulnerabilities for the treatment of liver cancer

期刊

NATURE
卷 574, 期 7777, 页码 268-+

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NATURE PORTFOLIO
DOI: 10.1038/s41586-019-1607-3

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资金

  1. European Research Council (ERC) [787925]
  2. Dutch Cancer Society through the Oncode Institute [KWF 12049/2018-2, 6702/2014]
  3. Center for Cancer Genomics (CGC)
  4. National Basic Research Program of China (973 Program) [2015CB553905]
  5. National Key Sci-Tech Special Projects of Infectious Diseases of China [2018ZX10732202-002-003]
  6. National Natural Science Foundation of China [81920108025, 81421001, 81672933, 81874229]
  7. Shanghai Municipal Education Commission-Gaofeng Clinical Medicine Grant Support [20181703]
  8. Shanghai Municipal Commission of Health and Family Planning [2017YQ064, 2018YQ20]
  9. Shanghai Rising-Star Program [18QA1403900]
  10. European Research Council (ERC) [787925] Funding Source: European Research Council (ERC)

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Liver cancer remains difficult to treat, owing to a paucity of drugs that target critical dependencies(1,2); broad-spectrum kinase inhibitors such as sorafenib provide only a modest benefit to patients with hepatocellular carcinoma(3). The induction of senescence may represent a strategy for the treatment of cancer, especially when combined with a second drug that selectively eliminates senescent cancer cells (senolysis)(4,5). Here, using a kinome-focused genetic screen, we show that pharmacological inhibition of the DNA-replication kinase CDC7 induces senescence selectively in liver cancer cells with mutations in TP53. A follow-up chemical screen identified the antidepressant sertraline as an agent that kills hepatocellular carcinoma cells that have been rendered senescent by inhibition of CDC7. Sertraline suppressed mTOR signalling, and selective drugs that target this pathway were highly effective in causing the apoptotic cell death of hepatocellular carcinoma cells treated with a CDC7 inhibitor. The feedback reactivation of mTOR signalling after its inhibition(6) is blocked in cells that have been treated with a CDC7 inhibitor, which leads to the sustained inhibition of mTOR and cell death. Using multiple in vivo mouse models of liver cancer, we show that treatment with combined inhibition of of CDC7 and mTOR results in a marked reduction of tumour growth. Our data indicate that exploiting an induced vulnerability could be an effective treatment for liver cancer.

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