Sun Qian, Zhao Xian, Liu Xin, Wang Yanli, Huang Jian, Jiang Bing, Chen Qin, Yu Jianxiu
Department of Oncology, No. 3 People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China; Department of Biochemistry and Molecular Cell Biology, Shanghai Key Laboratory of Tumor Microenvironment and Inflammation, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Prostate. 2014 Dec;74(16):1613-21. doi: 10.1002/pros.22878. Epub 2014 Sep 11.
miR-146a (miR-146a-5p) has been reported to be aberrantly expressed in different types of cancers, the current knowledge about the role of miR-146a in prostate cancer is still limited.
The expression levels of miR-146a in cell lines and tissues were measured by qRT-PCR and in situ hybridization. Effects of miR-146a on cell growth and migration were evaluated by colony formation assay and RTCA assay, respectively. The dual luciferase assay was used to examine the binding between miR-146a and the 3'UTR of potential targets.
We found that enforced over-expression of miR-146a in prostate cancer cells suppressed whereas knockdown of miR-146a increased anchorage-independent growth, migration, and invasion. Mechanistic studies revealed that miR-146a repressed the expression of Rac1 through binding to its 3'UTR. Consistently, knockdown of Rac1 phenocopied the anti-migration effect of overexpressing miR-146a, and knockdown of Rac1 in miR-146a-silencing cells antagonized the increase in cell motility induced by silencing miR-146a. Furthermore, miR-146a was found to be inversely correlated with Rac1 in human prostate cancer tissues.
Our data suggest that miR-146a plays a suppressive role in prostate cancer through down-regulation of Rac1. The miR-146a/Rac1 signaling axis may be a potential therapeutic target to prevent prostate cancer progression.
据报道,miR-146a(miR-146a-5p)在不同类型的癌症中表达异常,目前关于miR-146a在前列腺癌中作用的认识仍然有限。
通过qRT-PCR和原位杂交检测细胞系和组织中miR-146a的表达水平。分别通过集落形成试验和RTCA试验评估miR-146a对细胞生长和迁移的影响。采用双荧光素酶试验检测miR-146a与潜在靶标的3'UTR之间的结合。
我们发现,在前列腺癌细胞中强制过表达miR-146a会抑制细胞生长,而敲低miR-146a则会增加细胞的非锚定依赖性生长、迁移和侵袭。机制研究表明,miR-146a通过与Rac1的3'UTR结合来抑制其表达。一致地,敲低Rac1模拟了过表达miR-146a的抗迁移作用,而在miR-146a沉默细胞中敲低Rac1则拮抗了沉默miR-146a诱导的细胞运动性增加。此外,在人类前列腺癌组织中发现miR-146a与Rac1呈负相关。
我们的数据表明,miR-146a通过下调Rac1在前列腺癌中发挥抑制作用。miR-146a/Rac1信号轴可能是预防前列腺癌进展的潜在治疗靶点。