Chidamide-induced ROS accumulation and miR-129-3p-dependent cell cycle arrest in non-small lung cancer cells

被引:28
作者
Wu, Yueh-Feng [1 ,2 ]
Ou, Chu-Chyn [3 ]
Chien, Peng-Ju [1 ]
Chang, Hui-Yi [1 ]
Ko, Jiunn-Liang [1 ,4 ]
Wang, Bing-Yen [5 ,6 ,7 ,8 ,9 ,10 ]
机构
[1] Chung Shan Med Univ, Inst Med, Taichung, Taiwan
[2] Natl Taiwan Univ, Inst Biomed Engn, Coll Med & Coll Engn, Taipei, Taiwan
[3] Chung Shan Med Univ, Chool Nutr, Taichung, Taiwan
[4] Chung Shan Med Univ Hosp, Dept Med Oncol & Chest Med, Taichung, Taiwan
[5] Changhua Christian Hosp, Div Thorac Surg, Dept Surg, Changhua, Taiwan
[6] Chung Shan Med Univ, Sch Med, Taichung, Taiwan
[7] Kaohsiung Med Univ, Sch Med, Coll Med, Kaohsiung, Taiwan
[8] Natl Chung Hsing Univ, Inst Genom & Bioinformat, Taichung, Taiwan
[9] Ming Dao Univ, Ctr Gen Educ, Changhua, Taiwan
[10] Natl Chung Hsing Univ, PhD Program Translat Med, Taichung, Taiwan
关键词
Chidamide; Reactive oxygen species (ROS); Cell cycle arrest; miR-129-3p; Lung cancer; HISTONE DEACETYLASE INHIBITOR; EPIGENETIC REGULATION; TELOMERASE ACTIVITY; DNA-DAMAGE; APOPTOSIS; EXPRESSION; PROLIFERATION; MIGRATION;
D O I
10.1016/j.phymed.2018.09.218
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: Epigenetic therapy is a promising popular treatment modality for various cancers. Histone modification and miRNA should not be underestimated in lung cancer. This study aimed to investigate whether chidamide, a histone deacetylase inhibitor (HDACi), which inhibits telomerase activity and induces cell cycle arrest, influences ROS and miRNA production in non-small cell lung cancer (NSCLC) cells. Methods: H1355 and A549 were treated with chidamide. The analysis of DNA content was measured by FACSCalibur equipped with a 488 nm laser. H1355 cells were transfected with miR-129-3p mimic by Lipofectamine2000. Telomerase activity was performed on the telomeric repeat amplification protocol (TRAP) assay. Detection of thymidylate synthase (TS), p21, p53, pRB, and beta-actin, were performed by western blot analysis. Results: Our data showed that expression of TS, p21, and pRB were altered in the presence of chidamide by PCR and western blot. Using BrdU-incorporation analysis, we found that chidamide induced G1 arrest through the regulation of the TS gene by miR-129-3p. Chidamide was shown to suppress telomerase activity in the TRAP assay and reduced the expression of human telomerase reverse transcriptase (hTERT) by PCR and q-PCR in H1355 and A549 cells. Chidamide increased the generation of reactive oxygen species (ROS) by flow cytometry. N-acetyl cysteine (NAC), a ROS scavenger, attenuated chidamide-induced telomerase activity inhibition. Conclusion: Chidamide repressed telomerase activity through ROS accumulation and cell cycle arrest by miR-129-3p upregulation in both H1355 and A549 cells. This is the first study to demonstrate that chidamide induces miR-129-3p upregulation and ROS accumulation, leading to cell cycle arrest.
引用
收藏
页码:94 / 102
页数:9
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