4.8 Article

IL-17B/IL-17RB signaling cascade contributes to self-renewal and tumorigenesis of cancer stem cells by regulating Beclin-1 ubiquitination

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ONCOGENE
卷 40, 期 12, 页码 2200-2216

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SPRINGERNATURE
DOI: 10.1038/s41388-021-01699-4

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资金

  1. National Natural Science Foundation of China [81702439, 81802446, 81602160]
  2. Tai Shan Young Scholar Foundation of Shandong Province [tsqn201909192]
  3. Shandong Provincial Natural Science Foundation [ZR2019BH050, ZR2020YQ59]
  4. Ph.D. Research Foundation of the Affiliated Hospital of Jining Medical University [2018-BS-001, 2018-BS-013]
  5. Project of Health and Family Planning Commision of Shandong province [2017WS513]
  6. Jining Medical University Teacher Research Support Fund [JYFC2018FKJ035]
  7. Project of Health and Family Planning Commission of Shandong Province [2017WS513]

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The IL-17B/IL-17RB signaling cascade promotes self-renewal and tumorigenesis of CSCs by inducing Beclin-1 ubiquitination. IL-17RB expression is upregulated in gastric cancer (GC) tissues, correlating with cancer cell differentiation. The study suggests IL-17B as a potential therapeutic target for cancer treatment.
Cancer stem cells (CSCs) are characterized by robust self-renewal and tumorigenesis and are responsible for metastasis, drug resistance, and angiogenesis. However, the molecular mechanisms for the regulation of CSC homeostasis are incompletely understood. This study demonstrated that the interleukin-17 (IL-17)B/IL-17RB signaling cascade promotes the self-renewal and tumorigenesis of CSCs by inducing Beclin-1 ubiquitination. We found that IL-17RB expression was significantly upregulated in spheroid cells and Lgr5-positive cells from the same tumor tissues of patients with gastric cancer (GC), which was closely correlated with the degree of cancer cell differentiation. Recombinant IL-17B (rIL-17B) promoted the sphereformation ability of CSCs in vitro and enhanced tumor growth and metastasis in vivo. Interestingly, IL-17B induced autophagosome formation and cleavage-mediated transformation of LC3 in CSCs and 293T cells. Furthermore, inhibition of autophagy activation by ATG7 knockdown reversed rIL-17B-induced self-renewal of GC cells. In addition, we showed that IL-17B also promoted K63-mediated ubiquitination of Beclin-1 by mediating the binding of tumor necrosis factor receptorassociated factor 6 to Beclin-1. Silencing IL-17RB expression abrogated the effects of IL-17B on Beclin-1 ubiquitination and autophagy activation in GC cells. Finally, we showed that IL-17B level in the serum of GC patients was positively correlated with IL-17RB expression in GC tissues, and IL-17B could induce IL-17RB expression in GC cells. Overall, the results elucidate the novel functions of IL-17B for CSCs and suggest that the intervention of the IL-17B/IL-17RB signaling pathway may provide new therapeutic targets for the treatment of cancer.

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