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MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells

Abnormalities of autophagy have been implicated in an increasing number of human cancers, including glioma. To date, there is a wealth of evidence indicating that microRNAs (miRNAs) contribute significantly to autophagy in a variety of cancers. Previous studies have suggested that miR-129 functioned...

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Autores principales: Chen, Xiong, Zhang, Yingying, Shi, Yingying, Lian, Haiwei, Tu, Huilin, Han, Song, Yin, Jun, Peng, Biwen, Zhou, Beiyan, He, Xiaohua, Liu, Wanhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891036/
https://www.ncbi.nlm.nih.gov/pubmed/26824182
http://dx.doi.org/10.18632/oncotarget.7003
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author Chen, Xiong
Zhang, Yingying
Shi, Yingying
Lian, Haiwei
Tu, Huilin
Han, Song
Yin, Jun
Peng, Biwen
Zhou, Beiyan
He, Xiaohua
Liu, Wanhong
author_facet Chen, Xiong
Zhang, Yingying
Shi, Yingying
Lian, Haiwei
Tu, Huilin
Han, Song
Yin, Jun
Peng, Biwen
Zhou, Beiyan
He, Xiaohua
Liu, Wanhong
author_sort Chen, Xiong
collection PubMed
description Abnormalities of autophagy have been implicated in an increasing number of human cancers, including glioma. To date, there is a wealth of evidence indicating that microRNAs (miRNAs) contribute significantly to autophagy in a variety of cancers. Previous studies have suggested that miR-129 functioned as an important inhibitor of the cell cycle and could promote the apoptosis of many cancer cell lines in vitro. Here, we reported that miR-129 acted as a potent inducer of autophagy. Forced expression of miR-129 could induce autophagic flux by targetedly suppressing Notch-1 in glioma cells. The autophagy induced by miR-129 could restrain the activity of mammalian target of rapamycin (mTOR) and upregulate Beclin-1. Moreover, we demonstrated that E2F transcription factor 7 (E2F7) could also trigger autophagic flux by upregulating Beclin-1 and mediating miR-129-induced autophagy. Additionally, knockdown of Notch-1 could upregulate the expression of E2F7, whereas downregulation of E2F7 alleviated shNotch-1-induced autophagic flux. In particular, knockdown of endogenous Beclin-1 could effectively reduce autophagic flux stimulated by miR-129 and E2F7. Interestingly, upon attenuation of miR-129- or E2F7-triggered autophagic flux rescued cell viability suppressed by them. More importantly, intratumoral injection of pHAGE-miR-129 lentivirus in a nude mouse xenograft model significantly restrained tumor growth and triggered autophagy. In conclusion, these findings identify a new function for miR-129 as a potent inducer of autophagy through a novel Notch-1/E2F7/Beclin-1 axis in glioma.
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spelling pubmed-48910362016-06-20 MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells Chen, Xiong Zhang, Yingying Shi, Yingying Lian, Haiwei Tu, Huilin Han, Song Yin, Jun Peng, Biwen Zhou, Beiyan He, Xiaohua Liu, Wanhong Oncotarget Research Paper Abnormalities of autophagy have been implicated in an increasing number of human cancers, including glioma. To date, there is a wealth of evidence indicating that microRNAs (miRNAs) contribute significantly to autophagy in a variety of cancers. Previous studies have suggested that miR-129 functioned as an important inhibitor of the cell cycle and could promote the apoptosis of many cancer cell lines in vitro. Here, we reported that miR-129 acted as a potent inducer of autophagy. Forced expression of miR-129 could induce autophagic flux by targetedly suppressing Notch-1 in glioma cells. The autophagy induced by miR-129 could restrain the activity of mammalian target of rapamycin (mTOR) and upregulate Beclin-1. Moreover, we demonstrated that E2F transcription factor 7 (E2F7) could also trigger autophagic flux by upregulating Beclin-1 and mediating miR-129-induced autophagy. Additionally, knockdown of Notch-1 could upregulate the expression of E2F7, whereas downregulation of E2F7 alleviated shNotch-1-induced autophagic flux. In particular, knockdown of endogenous Beclin-1 could effectively reduce autophagic flux stimulated by miR-129 and E2F7. Interestingly, upon attenuation of miR-129- or E2F7-triggered autophagic flux rescued cell viability suppressed by them. More importantly, intratumoral injection of pHAGE-miR-129 lentivirus in a nude mouse xenograft model significantly restrained tumor growth and triggered autophagy. In conclusion, these findings identify a new function for miR-129 as a potent inducer of autophagy through a novel Notch-1/E2F7/Beclin-1 axis in glioma. Impact Journals LLC 2016-01-25 /pmc/articles/PMC4891036/ /pubmed/26824182 http://dx.doi.org/10.18632/oncotarget.7003 Text en Copyright: © 2016 Chen et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chen, Xiong
Zhang, Yingying
Shi, Yingying
Lian, Haiwei
Tu, Huilin
Han, Song
Yin, Jun
Peng, Biwen
Zhou, Beiyan
He, Xiaohua
Liu, Wanhong
MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title_full MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title_fullStr MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title_full_unstemmed MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title_short MiR-129 triggers autophagic flux by regulating a novel Notch-1/ E2F7/Beclin-1 axis to impair the viability of human malignant glioma cells
title_sort mir-129 triggers autophagic flux by regulating a novel notch-1/ e2f7/beclin-1 axis to impair the viability of human malignant glioma cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891036/
https://www.ncbi.nlm.nih.gov/pubmed/26824182
http://dx.doi.org/10.18632/oncotarget.7003
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