4.3 Article

Antitumor effects of the antiparasitic agent ivermectin via inhibition of Yes-associated protein 1 expression in gastric cancer

期刊

ONCOTARGET
卷 8, 期 64, 页码 107666-107677

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.22587

关键词

ivermectin; yes-associated protein 1 inhibitor; gastric cancer; antiproliferative effect; therapeutic target

资金

  1. Japan Society for the Promotion of Science (JSPS) [16K07177, 16K10543, 16K10397, 16K19197, 16K19107, 16H01576, 26461980, 26293303]
  2. OITA Cancer Research Foundation
  3. Eli Lilly Japan K.K Grant
  4. Daiwa Securities Health Foundation
  5. Grants-in-Aid for Scientific Research [26461980, 16K10397, 16K19197, 16K07177, 15H04921, 26293303, 17H01400, 16H01576, 16K19107, 26114005, 16K10543] Funding Source: KAKEN

向作者/读者索取更多资源

Yes-associated protein 1 (YAP1) acts as an oncogene through dephosphorylation and nuclear translocation, and nuclear accumulation of YAP1 is associated with poor prognosis in gastric cancer (GC). We previously identified ivermectin, an antiparasitic drug, as a YAP1 inhibitor. Here, we aimed to clarify whether ivermectin had antitumor effects on GC through inhibition of YAP1. First, we evaluated the antiproliferative effects of ivermectin on human GC cells using in vitro proliferation assays and a xenograft mouse model. YAP1-knockdown assays were performed to assess whether the sensitivity to ivermectin depended on YAP1 expression. Next, we explored the mechanism through which ivermectin regulated YAP1 expression or localization by immunoblotting and reverse transcription-quantitative polymerase chain reaction for YAP1 and the downstream gene CTGF. Finally, the clinical significance of YAP1 expression was examined using three independent GC datasets. We found that MKN1 GC cells were most sensitive to ivermectin, whereas MKN7 cells were most resistant. In MKN1 xenografts, ivermectin suppressed tumor growth, and the sensitivity of MKN1 cells to ivermectin was decreased by YAP1 knockdown. Ivermectin inhibited YAP1 nuclear expression and CTGF expression in MKN1 cells but not MKN7 cells. Moreover, ivermectin decreased YAP1 mRNA expression, thereby inhibiting nuclear accumulation of YAP1 in MKN1 cells. In survival analysis, low YAP1 mRNA expression was associated with a better prognosis in three independent GC datasets. In conclusion, we identified ivermectin as a potential antitumor agent and found a promising novel therapeutic strategy for inhibition of GC progression by blocking YAP1 expression.

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