MicroRNA-25 regulates chemoresistance-associated autophagy in breast cancer cells, a process modulated by the natural autophagy inducer isoliquiritigenin
机构:[1]Department of Mammary Disease, Guangdong Provincial Hospital of Chinese Medicine大德路总院乳腺科大德路总院乳腺科广东省中医院[2]School of Chinese Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China[3]Department of Dermatology, Guangdong Provincial Hospital of Chinese Medicine, The Second Clinical Collage of Guangzhou University of Chinese Medicine大德路总院皮肤科大德路总院皮肤科广东省中医院[4]Deapartment of Pharmacology, Chengdu University of Traditional Chinese Medicine
Recent findings have revealed that dysregulated miRNAs contribute significantly to autophagy and chemoresistance. Pharmacologically targeting autophagy-related miRNAs is a novel strategy to reverse drug resistance. Here, we report a novel function of isoliquiritigenin (ISL) as a natural inhibitor of autophagy-related miR-25 in killing drug-resistant breast cancer cells. ISL induced chemosensitization, cell cycle arrest and autophagy, but not apoptosis, in MCF-7/ADR cells. ISL also promoted the degradation of the ATP-binding cassette (ABC) protein ABCG2 primarily via the autophagy-lysosome pathway. More importantly, miRNA 3.0 array experiments identified miR-25 as the main target of ISL in triggering autophagy flux. A mechanistic study validated that miR-25 inhibition led to autophagic cell death by directly increasing ULK1 expression, an early regulator in the autophagy induction phase. miR-25 overexpression was demonstrated to block ISL-induced autophagy and chemosensitization. Subsequent in vivo experiments showed that ISL had chemosensitizing potency, as revealed by an increase in LC3-II staining, the downregulation of ABCG2, a reduction in miR-25 expression and the activation of the miR-25 target ULK1. Overall, our results not only indicate that ISL acts as a natural autophagy inducer to increase breast cancer chemosensitivity, but also reveal that miR-25 functions as a novel regulator of autophagy by targeting ULK1.
基金:
This work was supported by the Health and Medical Research Fund (HMRF) of Hong Kong (Project no: 11121951), Seed funding programme for basic research of the university of Hong Kong (Project no:201211159095), Small project funding of the university of Hong Kong (Project no: 201209176138) and Prestigious herbalist Lin Yi’s experience inheritance project supported by state administration of Traditional Chinese Medicine of China (Project no: 12BMaa03).
第一作者机构:[1]Department of Mammary Disease, Guangdong Provincial Hospital of Chinese Medicine[2]School of Chinese Medicine, The University of Hong Kong, Pokfulam, Hong Kong, China
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推荐引用方式(GB/T 7714):
Zhiyu Wang,Neng Wang,Pengxi Liu,et al.MicroRNA-25 regulates chemoresistance-associated autophagy in breast cancer cells, a process modulated by the natural autophagy inducer isoliquiritigenin[J].ONCOTARGET.2014,5(16):7013-7026.doi:10.18632/oncotarget.2192.
APA:
Zhiyu Wang,Neng Wang,Pengxi Liu,Qianjun Chen,Honglin Situ...&Jianping Chen.(2014).MicroRNA-25 regulates chemoresistance-associated autophagy in breast cancer cells, a process modulated by the natural autophagy inducer isoliquiritigenin.ONCOTARGET,5,(16)
MLA:
Zhiyu Wang,et al."MicroRNA-25 regulates chemoresistance-associated autophagy in breast cancer cells, a process modulated by the natural autophagy inducer isoliquiritigenin".ONCOTARGET 5..16(2014):7013-7026