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MicroRNA-125b Interacts with Foxp3 to Induce Autophagy in Thyroid Cancer.


ABSTRACT: Thyroid cancer is rapidly increasing in incidence worldwide. Although most thyroid cancer can be cured with surgery, radioactive iodine, and/or chemotherapy, thyroid cancers still recur and may become chemoresistant. Autophagy is a complex self-degradative process that plays a dual role in cancer development and progression. In this study, we found that miR-125b was downregulated in tissue samples of thyroid cancer as well as in thyroid cancer cell lines, and the expression of Foxp3 was upregulated. Further, we demonstrated that miR-125b could directly act on Foxp3 by binding to its 3' UTR and inhibit the expression of Foxp3. A negative relationship between miR-125b and Foxp3 was thus revealed. Overexpression of miR-125b markedly sensitized thyroid cancer cells to cisplatin treatment by inducing autophagy through an Atg7 pathway in vitro and in vivo. Taken together, our findings demonstrate a novel mechanism by which miR-125b has the potential to negatively regulate Foxp3 to promote autophagy and enhance the efficacy of cisplatin in thyroid cancer. miR-125 may be of therapeutic significance in thyroid cancer.

SUBMITTER: Wang S 

PROVIDER: S-EPMC6127503 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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MicroRNA-125b Interacts with Foxp3 to Induce Autophagy in Thyroid Cancer.

Wang Shanshan S   Wu Juekun J   Ren Jianwei J   Vlantis Alexander C AC   Li Ming-Yue MY   Liu Shirley Y W SYW   Ng Enders K W EKW   Chan Amy B W ABW   Luo Ding-Cun DC   Liu Zhimin Z   Guo Wei W   Xue Lingbin L   Ng Siu Kwan SK   van Hasselt C Andrew CA   Tong Michael C F MCF   Chen George G GG  

Molecular therapy : the journal of the American Society of Gene Therapy 20180621 9


Thyroid cancer is rapidly increasing in incidence worldwide. Although most thyroid cancer can be cured with surgery, radioactive iodine, and/or chemotherapy, thyroid cancers still recur and may become chemoresistant. Autophagy is a complex self-degradative process that plays a dual role in cancer development and progression. In this study, we found that miR-125b was downregulated in tissue samples of thyroid cancer as well as in thyroid cancer cell lines, and the expression of Foxp3 was upregula  ...[more]

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