Division of Urology, Department of Surgery, Shin-Kong Wu Ho-Su Memorial Hospital, Taipei, Taiwan.
Division of Urology, School of Medicine, Fu-Jen Catholic University, New Taipei, Taiwan.
Environ Toxicol. 2020 Jan;35(1):47-54. doi: 10.1002/tox.22841. Epub 2019 Oct 6.
Benzyl isothiocyanate (BITC), a bioactive natural product present in cruciferous vegetables, has been proved to prevent cancer progression through various mechanisms. In our previous report, we proved that BITC exhibits antitumor effects in bladder cancer by suppressing IGF1R, FGFR3, and mTOR, which is mediated by miR-99a expression. In this study, we identified the signal pathway involved in regulating miR-99a expression after BITC exposure in bladder cancer. Treatment with different BITC concentrations resulted in induction of miR-99a expression in bladder cancer cell lines. Activation of extracellular signal-regulated protein kinase (ERK) and c-jun N-terminal kinase was observed in bladder cancer after BITC treatment for 24 hours. Interestingly, by using a chemical inhibitor of candidate pathways, we found that only the ERK signal pathway is required for miR-99a expression. Furthermore, we evaluated the transcription factor that may contribute to miR-99a expression in response to BITC treatment. The results indicated that c-Jun/AP-1 was activated after BITC treatment. Moreover, we confirmed c-Jun/AP-1 activation through immunofluorescence and the luciferase reporter assay. The results showed that BITC treatment markedly improved nuclear translocation of c-Jun/AP-1 and luciferase activity dose dependently. Finally, pretreatment with the ERK inhibitor U0126 diminished c-Jun phosphorylation and transcriptional activation, suggesting that BITC elicits ERK/c-Jun signal transduction, which is responsible for miR-99a expression in bladder cancer. The present work identifies the mechanism involved in upregulation miR-99a after BITC treatment, which provides an explanation for BITC biological function in our previous work.
苄基异硫氰酸酯 (BITC) 是十字花科蔬菜中含有的一种生物活性天然产物,已被证明通过多种机制预防癌症进展。在我们之前的报告中,我们证明 BITC 通过抑制 IGF1R、FGFR3 和 mTOR 来发挥其在膀胱癌中的抗肿瘤作用,这是由 miR-99a 的表达介导的。在这项研究中,我们确定了 BITC 暴露后调节膀胱癌中 miR-99a 表达的信号通路。用不同浓度的 BITC 处理会导致膀胱癌细胞系中 miR-99a 的表达诱导。在用 BITC 处理 24 小时后,观察到膀胱癌中细胞外信号调节蛋白激酶 (ERK) 和 c-jun N 端激酶的激活。有趣的是,通过使用候选途径的化学抑制剂,我们发现只有 ERK 信号途径是 miR-99a 表达所必需的。此外,我们评估了可能有助于 miR-99a 表达的转录因子,以响应 BITC 处理。结果表明,BITC 处理后 c-Jun/AP-1 被激活。此外,我们通过免疫荧光和荧光素酶报告基因检测证实了 c-Jun/AP-1 的激活。结果表明,BITC 处理显著改善了 c-Jun/AP-1 的核易位,并且呈剂量依赖性地提高了荧光素酶活性。最后,ERK 抑制剂 U0126 的预处理减少了 c-Jun 的磷酸化和转录激活,表明 BITC 引发了 ERK/c-Jun 信号转导,这是其在膀胱癌中上调 miR-99a 的原因。本工作确定了 BITC 处理后 miR-99a 上调的机制,为我们之前工作中 BITC 的生物学功能提供了解释。