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Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma

Previously, we reported that MYC oncoprotein down-regulates the transcription of human MC-let-7a-1~let-7d microRNA cluster in hepatocarcinoma (HCC). Surprisingly, in silico analysis indicated that let-7 miRNA expression levels are not reduced in glioblastoma (GBM). Here we investigated the molecular...

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Autores principales: Wang, Zifeng, Lin, Sheng, Zhang, Ji, Xu, Zhenhua, Xiang, Yu, Yao, Hong, Ge, Lei, Xie, Dan, Kung, Hsiang-fu, Lu, Gang, Poon, Wai Sang, Liu, Quentin, Lin, Marie Chia-mi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302913/
https://www.ncbi.nlm.nih.gov/pubmed/27409345
http://dx.doi.org/10.18632/oncotarget.10517
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author Wang, Zifeng
Lin, Sheng
Zhang, Ji
Xu, Zhenhua
Xiang, Yu
Yao, Hong
Ge, Lei
Xie, Dan
Kung, Hsiang-fu
Lu, Gang
Poon, Wai Sang
Liu, Quentin
Lin, Marie Chia-mi
author_facet Wang, Zifeng
Lin, Sheng
Zhang, Ji
Xu, Zhenhua
Xiang, Yu
Yao, Hong
Ge, Lei
Xie, Dan
Kung, Hsiang-fu
Lu, Gang
Poon, Wai Sang
Liu, Quentin
Lin, Marie Chia-mi
author_sort Wang, Zifeng
collection PubMed
description Previously, we reported that MYC oncoprotein down-regulates the transcription of human MC-let-7a-1~let-7d microRNA cluster in hepatocarcinoma (HCC). Surprisingly, in silico analysis indicated that let-7 miRNA expression levels are not reduced in glioblastoma (GBM). Here we investigated the molecular basis of this differential expression. Using human GBM U87 and U251 cells, we first demonstrated that forced over-expression of MYC indeed could not down-regulate the expression of human MC-let-7a-1~let-7d microRNA cluster in GBM. Furthermore, analysis of MC-let-7a-1~let-7d promoter in GBM indicated that MYC failed to inhibit the promoter activity. Pearson's correlation and Linear Regression analysis using the expression data from GSE55092 (HCC) and GSE4290 (GBM) demonstrated a converse relationship of MC-let-7a-1~let-7d and MYC only in HCC but not in GBM. To understand the underlying mechanisms, we examined whether MYC could bind to the non-canonical E-box 3 located in the promoter of MC-let-7a-1~let-7d. Results from both chromatin immune-precipitation (ChIP) and super-shift assays clearly demonstrated the loss of MYC and E-box 3 binding in GBM, suggesting for the first time that a defective MYC and E-box3 binding in GBM is responsible for the differential MYC mediated transcriptional inhibition of MC-let-7a-1~let-7d and potentially other tumor suppressors. MYC and let-7 are key oncoprotein and tumor suppressor, respectively. Understanding the molecular mechanisms of their regulations will provide new insight and have important implications in the therapeutics of GBM as well as other cancers.
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spelling pubmed-53029132017-02-13 Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma Wang, Zifeng Lin, Sheng Zhang, Ji Xu, Zhenhua Xiang, Yu Yao, Hong Ge, Lei Xie, Dan Kung, Hsiang-fu Lu, Gang Poon, Wai Sang Liu, Quentin Lin, Marie Chia-mi Oncotarget Research Paper Previously, we reported that MYC oncoprotein down-regulates the transcription of human MC-let-7a-1~let-7d microRNA cluster in hepatocarcinoma (HCC). Surprisingly, in silico analysis indicated that let-7 miRNA expression levels are not reduced in glioblastoma (GBM). Here we investigated the molecular basis of this differential expression. Using human GBM U87 and U251 cells, we first demonstrated that forced over-expression of MYC indeed could not down-regulate the expression of human MC-let-7a-1~let-7d microRNA cluster in GBM. Furthermore, analysis of MC-let-7a-1~let-7d promoter in GBM indicated that MYC failed to inhibit the promoter activity. Pearson's correlation and Linear Regression analysis using the expression data from GSE55092 (HCC) and GSE4290 (GBM) demonstrated a converse relationship of MC-let-7a-1~let-7d and MYC only in HCC but not in GBM. To understand the underlying mechanisms, we examined whether MYC could bind to the non-canonical E-box 3 located in the promoter of MC-let-7a-1~let-7d. Results from both chromatin immune-precipitation (ChIP) and super-shift assays clearly demonstrated the loss of MYC and E-box 3 binding in GBM, suggesting for the first time that a defective MYC and E-box3 binding in GBM is responsible for the differential MYC mediated transcriptional inhibition of MC-let-7a-1~let-7d and potentially other tumor suppressors. MYC and let-7 are key oncoprotein and tumor suppressor, respectively. Understanding the molecular mechanisms of their regulations will provide new insight and have important implications in the therapeutics of GBM as well as other cancers. Impact Journals LLC 2016-07-09 /pmc/articles/PMC5302913/ /pubmed/27409345 http://dx.doi.org/10.18632/oncotarget.10517 Text en Copyright: © 2016 Wang 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
Wang, Zifeng
Lin, Sheng
Zhang, Ji
Xu, Zhenhua
Xiang, Yu
Yao, Hong
Ge, Lei
Xie, Dan
Kung, Hsiang-fu
Lu, Gang
Poon, Wai Sang
Liu, Quentin
Lin, Marie Chia-mi
Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title_full Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title_fullStr Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title_full_unstemmed Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title_short Loss of MYC and E-box3 binding contributes to defective MYC-mediated transcriptional suppression of human MC-let-7a-1~let-7d in glioblastoma
title_sort loss of myc and e-box3 binding contributes to defective myc-mediated transcriptional suppression of human mc-let-7a-1~let-7d in glioblastoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302913/
https://www.ncbi.nlm.nih.gov/pubmed/27409345
http://dx.doi.org/10.18632/oncotarget.10517
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