Characterization of initial key steps of IL-17 receptor B oncogenic signaling for targeted therapy of pancreatic cancer

胰腺癌 癌症研究 磷酸化 受体酪氨酸激酶 癌变 癌症 信号转导 生物 细胞生物学 生物化学 基因 遗传学
作者
Heng‐Hsiung Wu,Lung-Hung Tsai,Chun-Kai Huang,Pang‐Hung Hsu,Mei‐Yu Chen,Y.M. Chen,Chun‐Mei Hu,Chia‐Ning Shen,Chen‐Chen Lee,Ming‐Chu Chang,Yu‐Ting Chang,Yu‐Wen Tien,Yung‐Ming Jeng,Eva Y.-H.P. Lee,Wen‐Hwa Lee
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science (AAAS)]
卷期号:13 (583) 被引量:20
标识
DOI:10.1126/scitranslmed.abc2823
摘要

The members of the interleukin-17 (IL-17) cytokine family and their receptors were identified decades ago. Unlike IL-17 receptor A (IL-17RA), which heterodimerizes with IL-17RB, IL-17RC, and IL-17RD and mediates proinflammatory gene expression, IL-17RB plays a distinct role in promoting tumor growth and metastasis upon stimulation with IL-17B. However, the molecular basis by which IL-17RB promotes oncogenesis is unknown. Here, we report that IL-17RB forms a homodimer and recruits mixed-lineage kinase 4 (MLK4), a dual kinase, to phosphorylate it at tyrosine-447 upon treatment with IL-17B in vitro. Higher amounts of phosphorylated IL-17RB in tumor specimens obtained from patients with pancreatic cancer correlated with worse prognosis. Phosphorylated IL-17RB recruits the ubiquitin ligase tripartite motif containing 56 to add lysine-63–linked ubiquitin chains to lysine-470 of IL-17RB, which further assembles NF-κB activator 1 (ACT1) and other factors to propagate downstream oncogenic signaling. Consequentially, IL-17RB mutants with substitution at either tyrosine-447 or lysine-470 lose their oncogenic activity. Treatment with a peptide consisting of amino acids 403 to 416 of IL-17RB blocks MLK4 binding, tyrosine-477 phosphorylation, and lysine-470 ubiquitination in vivo, thereby inhibiting tumorigenesis and metastasis and prolonging the life span of mice bearing pancreatic tumors. These results establish a clear pathway of how proximal signaling of IL-17RB occurs and provides insight into how this pathway provides a therapeutic target for pancreatic cancer.
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