Dysregulation of miR-6868-5p/FOXM1 circuit contributes to colorectal cancer angiogenesis

被引:19
|
作者
Wang, Ye [1 ]
Wu, Meijuan [2 ]
Lei, Zengjie [2 ]
Huang, Mengxi [2 ]
Li, Zhiping [1 ]
Wang, Liya [2 ]
Cao, Qijun [1 ]
Han, Dong [1 ]
Chang, Yue [2 ]
Chen, Yanyan [2 ]
Liu, Xiaobei [2 ]
Xue, Lijun [2 ]
Mao, Xiaobei [2 ]
Geng, Jian [2 ]
Chen, Yanan [2 ]
Dai, Tingting [2 ]
Ren, Lili [2 ]
Wang, Qian [2 ]
Yu, Hongju [2 ]
Chen, Cheng [1 ,2 ]
Chu, Xiaoyuan [1 ,2 ]
机构
[1] Southern Med Univ, Jinling Hosp, Dept Med Oncol, Nanjing Clin Sch, Nanjing, Jiangsu, Peoples R China
[2] Nanjing Univ, Sch Med, Jinling Hosp, Dept Med Oncol, Nanjing, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Colorectal cancer; FOXM1; miRNA; Angiogenesis; M1 TRANSCRIPTION FACTOR; DOWN-REGULATION; POOR-PROGNOSIS; TUMOR INVASION; EXPRESSION; FOXM1; EZH2; BREAST; PROMOTES; 5-FLUOROURACIL;
D O I
10.1186/s13046-018-0970-5
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: Transcription factor forkhead box M1 (FOXM1) is a crucial regulator in colorectal cancer (CRC) progression. However, the regulatory mechanisms causing dysregulation of FOXM1 in CRC remain unclear. Methods: Dual-luciferase reporter assay was conducted to determine FOXM1 as miR-6868-5p target. The function of miR6868-5p and FOXM1 in CRC angiogenesis was verified in vitro. Intratumoral injection model was constructed to explore the effect of miR-6868-5p on angiogenesis in vivo. Chromatin immunoprecipitation assays were used to assess direct binding of H3K27me3 to the miR-6868 promoter. Results: Through integrated analysis, we identified miR-6868-5p as the potent regulator of FOXM1. Overexpression of miR-6868-5p in CRC cells inhibited the angiogenic properties of co-cultured endothelial cells, whereas silencing of miR6868-5p had opposite effects. In vivo delivery of miR-6868-5p blocked tumor angiogenesis in nude mice, resulting in tumor growth inhibition. Rescue of FOXM1 reversed the effect of miR-6868-5p on tumor angiogenesis. Further mechanistic study revealed that FOXM1 promoted the production of IL-8, which was responsible for the miR6868-5p/FOXM1 axis-regulated angiogenesis. Reciprocally, FOXM1 inhibited miR-6868-5p expression through EZH2-mediated H3K27me3 on miR-6868-5p promoter, thus forming a feedback circuit. Clinically, the level of miR-6868-5p was downregulated in CRC tissues and inversely correlated with microvessel density as well as levels of FOXM1 and IL-8 in tumor specimens. Conclusions: Together, these data identify miR-6868-5p as a novel determinant of FOXM1 expression and establish a miR-6868-5p/FOXM1 regulatory circuit for CRC angiogenesis, providing potential target for CRC treatment.
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页数:15
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