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Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation

MicroRNAs (miRNAs) have been recently found in the mitochondria, and were named “mitomiRs”, but their function has remained elusive. Here, we aimed to assess the presence and function(s) of mitomiRs in tongue squamous cell carcinoma (TSCC). Methods: miRNA microarray was performed in paired TSCC cell...

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Autores principales: Chen, Weixiong, Wang, Peng, Lu, Yingjuan, Jin, Tingting, Lei, Xinyuan, Liu, Mo, Zhuang, Peilin, Liao, Junkun, Lin, Zhaoyu, Li, Bowen, Peng, Yu, Pan, Guokai, Lv, Xiaobin, Zhang, Hanqing, Ou, Zhanpeng, Xie, Shule, Lin, Xinyu, Sun, Sheng, Ferrone, Soldano, Tannous, Bakhos A., Ruan, Yi, Li, Jinsong, Fan, Song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735381/
https://www.ncbi.nlm.nih.gov/pubmed/31534516
http://dx.doi.org/10.7150/thno.37556
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author Chen, Weixiong
Wang, Peng
Lu, Yingjuan
Jin, Tingting
Lei, Xinyuan
Liu, Mo
Zhuang, Peilin
Liao, Junkun
Lin, Zhaoyu
Li, Bowen
Peng, Yu
Pan, Guokai
Lv, Xiaobin
Zhang, Hanqing
Ou, Zhanpeng
Xie, Shule
Lin, Xinyu
Sun, Sheng
Ferrone, Soldano
Tannous, Bakhos A.
Ruan, Yi
Li, Jinsong
Fan, Song
author_facet Chen, Weixiong
Wang, Peng
Lu, Yingjuan
Jin, Tingting
Lei, Xinyuan
Liu, Mo
Zhuang, Peilin
Liao, Junkun
Lin, Zhaoyu
Li, Bowen
Peng, Yu
Pan, Guokai
Lv, Xiaobin
Zhang, Hanqing
Ou, Zhanpeng
Xie, Shule
Lin, Xinyu
Sun, Sheng
Ferrone, Soldano
Tannous, Bakhos A.
Ruan, Yi
Li, Jinsong
Fan, Song
author_sort Chen, Weixiong
collection PubMed
description MicroRNAs (miRNAs) have been recently found in the mitochondria, and were named “mitomiRs”, but their function has remained elusive. Here, we aimed to assess the presence and function(s) of mitomiRs in tongue squamous cell carcinoma (TSCC). Methods: miRNA microarray was performed in paired TSCC cell lines, Cal27 and its chemoresistant counterpart, Cal27-re. Decreased expression of mitomiRs in chemoresistant cells was characterized. The functions of mitomiRs were investigated by a series of in vitro and in vivo experiments. Results: Differential microarray analysis identified downregulation of mitomiR-5787 in Cal27-re cells. We knocked down mitomiR-5787 in parental cells and upregulated its expression in cisplatin-resistant cells. The sensitivity of TSCC cells to cisplatin was regulated by miR-5787. The glucose metabolism assay suggested that reduced expression of miR-5787 changed the balance of glucose metabolism by shifting it from oxidative phosphorylation to aerobic glycolysis. Xenograft experiments in BALB/c-nu mice further verified the in vitro results. Reduced expression of miR-5787 contributes to chemoresistance in TSCC cells by inhibiting the translation of mitochondrial cytochrome c oxidase subunit 3 (MT-CO3). The prognostic analysis of 126 TSCC patients showed that the patients with low expression of miR-5787 and/or MT-CO3 had poor cisplatin sensitivity and prognosis. Conclusions: Mitochondrial miR-5787 could regulate cisplatin resistance of TSCC cells and affect oxidative phosphorylation and aerobic glycolysis. Downregulation of miR-5787 inhibited the translation of MT-CO3 to regulate cisplatin resistance of TSCC. Mitochondrial miR-5787 and MT-CO3 can be used as predictive biomarkers or therapeutic targets for cisplatin chemotherapy resistance.
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spelling pubmed-67353812019-09-18 Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation Chen, Weixiong Wang, Peng Lu, Yingjuan Jin, Tingting Lei, Xinyuan Liu, Mo Zhuang, Peilin Liao, Junkun Lin, Zhaoyu Li, Bowen Peng, Yu Pan, Guokai Lv, Xiaobin Zhang, Hanqing Ou, Zhanpeng Xie, Shule Lin, Xinyu Sun, Sheng Ferrone, Soldano Tannous, Bakhos A. Ruan, Yi Li, Jinsong Fan, Song Theranostics Research Paper MicroRNAs (miRNAs) have been recently found in the mitochondria, and were named “mitomiRs”, but their function has remained elusive. Here, we aimed to assess the presence and function(s) of mitomiRs in tongue squamous cell carcinoma (TSCC). Methods: miRNA microarray was performed in paired TSCC cell lines, Cal27 and its chemoresistant counterpart, Cal27-re. Decreased expression of mitomiRs in chemoresistant cells was characterized. The functions of mitomiRs were investigated by a series of in vitro and in vivo experiments. Results: Differential microarray analysis identified downregulation of mitomiR-5787 in Cal27-re cells. We knocked down mitomiR-5787 in parental cells and upregulated its expression in cisplatin-resistant cells. The sensitivity of TSCC cells to cisplatin was regulated by miR-5787. The glucose metabolism assay suggested that reduced expression of miR-5787 changed the balance of glucose metabolism by shifting it from oxidative phosphorylation to aerobic glycolysis. Xenograft experiments in BALB/c-nu mice further verified the in vitro results. Reduced expression of miR-5787 contributes to chemoresistance in TSCC cells by inhibiting the translation of mitochondrial cytochrome c oxidase subunit 3 (MT-CO3). The prognostic analysis of 126 TSCC patients showed that the patients with low expression of miR-5787 and/or MT-CO3 had poor cisplatin sensitivity and prognosis. Conclusions: Mitochondrial miR-5787 could regulate cisplatin resistance of TSCC cells and affect oxidative phosphorylation and aerobic glycolysis. Downregulation of miR-5787 inhibited the translation of MT-CO3 to regulate cisplatin resistance of TSCC. Mitochondrial miR-5787 and MT-CO3 can be used as predictive biomarkers or therapeutic targets for cisplatin chemotherapy resistance. Ivyspring International Publisher 2019-08-12 /pmc/articles/PMC6735381/ /pubmed/31534516 http://dx.doi.org/10.7150/thno.37556 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Chen, Weixiong
Wang, Peng
Lu, Yingjuan
Jin, Tingting
Lei, Xinyuan
Liu, Mo
Zhuang, Peilin
Liao, Junkun
Lin, Zhaoyu
Li, Bowen
Peng, Yu
Pan, Guokai
Lv, Xiaobin
Zhang, Hanqing
Ou, Zhanpeng
Xie, Shule
Lin, Xinyu
Sun, Sheng
Ferrone, Soldano
Tannous, Bakhos A.
Ruan, Yi
Li, Jinsong
Fan, Song
Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title_full Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title_fullStr Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title_full_unstemmed Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title_short Decreased expression of mitochondrial miR-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting MT-CO3 translation
title_sort decreased expression of mitochondrial mir-5787 contributes to chemoresistance by reprogramming glucose metabolism and inhibiting mt-co3 translation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735381/
https://www.ncbi.nlm.nih.gov/pubmed/31534516
http://dx.doi.org/10.7150/thno.37556
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