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A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells

MYCN amplification is the most common genetic alteration in neuroblastoma and plays a critical role in neuroblastoma tumorigenesis. MYCN regulates neuroblastoma cell differentiation, which is one of the mechanisms underlying its oncogenic function. We recently identified a group of differentiation-i...

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Autores principales: Zhao, Zhenze, Ma, Xiuye, Shelton, Spencer D., Sung, Derek C., Li, Monica, Hernandez, Daniel, Zhang, Maggie, Losiewicz, Michael D., Chen, Yidong, Pertsemlidis, Alexander, Yu, Xiaojie, Liu, Yuanhang, Du, Liqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5346721/
https://www.ncbi.nlm.nih.gov/pubmed/27764804
http://dx.doi.org/10.18632/oncotarget.12676
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author Zhao, Zhenze
Ma, Xiuye
Shelton, Spencer D.
Sung, Derek C.
Li, Monica
Hernandez, Daniel
Zhang, Maggie
Losiewicz, Michael D.
Chen, Yidong
Pertsemlidis, Alexander
Yu, Xiaojie
Liu, Yuanhang
Du, Liqin
author_facet Zhao, Zhenze
Ma, Xiuye
Shelton, Spencer D.
Sung, Derek C.
Li, Monica
Hernandez, Daniel
Zhang, Maggie
Losiewicz, Michael D.
Chen, Yidong
Pertsemlidis, Alexander
Yu, Xiaojie
Liu, Yuanhang
Du, Liqin
author_sort Zhao, Zhenze
collection PubMed
description MYCN amplification is the most common genetic alteration in neuroblastoma and plays a critical role in neuroblastoma tumorigenesis. MYCN regulates neuroblastoma cell differentiation, which is one of the mechanisms underlying its oncogenic function. We recently identified a group of differentiation-inducing microRNAs. Given the demonstrated inter-regulation between MYCN and microRNAs, we speculated that MYCN and the differentiation-inducing microRNAs might form an interaction network to control the differentiation of neuroblastoma cells. In this study, we found that eight of the thirteen differentiation-inducing microRNAs, miR-506-3p, miR-124-3p, miR-449a, miR-34a-5p, miR-449b-5p, miR-103a-3p, miR-2110 and miR-34b-5p, inhibit N-Myc expression by either directly targeting the MYCN 3′UTR or through indirect regulations. Further investigation showed that both MYCN-dependent and MYCN-independent pathways play roles in mediating the differentiation-inducing function of miR-506-3p and miR-449a, two microRNAs that dramatically down-regulate MYCN expression. On the other hand, we found that N-Myc inhibits the expression of multiple differentiation-inducing microRNAs, suggesting that these miRNAs play a role in mediating the function of MYCN. In examining the published dataset collected from clinical neuroblastoma specimens, we found that expressions of two miRNAs, miR-137 and miR-2110, were significantly anti-correlated with MYCN mRNA levels, suggesting their interactions with MYCN play a clinically-relevant role in maintaining the MYCN and miRNA expression levels in neuroblastoma. Our findings altogether suggest that MYCN and differentiation-inducing miRNAs form an interaction network that play an important role in neuroblastoma tumorigenesis through regulating cell differentiation.
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spelling pubmed-53467212017-03-30 A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells Zhao, Zhenze Ma, Xiuye Shelton, Spencer D. Sung, Derek C. Li, Monica Hernandez, Daniel Zhang, Maggie Losiewicz, Michael D. Chen, Yidong Pertsemlidis, Alexander Yu, Xiaojie Liu, Yuanhang Du, Liqin Oncotarget Research Paper MYCN amplification is the most common genetic alteration in neuroblastoma and plays a critical role in neuroblastoma tumorigenesis. MYCN regulates neuroblastoma cell differentiation, which is one of the mechanisms underlying its oncogenic function. We recently identified a group of differentiation-inducing microRNAs. Given the demonstrated inter-regulation between MYCN and microRNAs, we speculated that MYCN and the differentiation-inducing microRNAs might form an interaction network to control the differentiation of neuroblastoma cells. In this study, we found that eight of the thirteen differentiation-inducing microRNAs, miR-506-3p, miR-124-3p, miR-449a, miR-34a-5p, miR-449b-5p, miR-103a-3p, miR-2110 and miR-34b-5p, inhibit N-Myc expression by either directly targeting the MYCN 3′UTR or through indirect regulations. Further investigation showed that both MYCN-dependent and MYCN-independent pathways play roles in mediating the differentiation-inducing function of miR-506-3p and miR-449a, two microRNAs that dramatically down-regulate MYCN expression. On the other hand, we found that N-Myc inhibits the expression of multiple differentiation-inducing microRNAs, suggesting that these miRNAs play a role in mediating the function of MYCN. In examining the published dataset collected from clinical neuroblastoma specimens, we found that expressions of two miRNAs, miR-137 and miR-2110, were significantly anti-correlated with MYCN mRNA levels, suggesting their interactions with MYCN play a clinically-relevant role in maintaining the MYCN and miRNA expression levels in neuroblastoma. Our findings altogether suggest that MYCN and differentiation-inducing miRNAs form an interaction network that play an important role in neuroblastoma tumorigenesis through regulating cell differentiation. Impact Journals LLC 2016-10-15 /pmc/articles/PMC5346721/ /pubmed/27764804 http://dx.doi.org/10.18632/oncotarget.12676 Text en Copyright: © 2016 Zhao et al. http://creativecommons.org/licenses/by/3.0/ 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
Zhao, Zhenze
Ma, Xiuye
Shelton, Spencer D.
Sung, Derek C.
Li, Monica
Hernandez, Daniel
Zhang, Maggie
Losiewicz, Michael D.
Chen, Yidong
Pertsemlidis, Alexander
Yu, Xiaojie
Liu, Yuanhang
Du, Liqin
A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title_full A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title_fullStr A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title_full_unstemmed A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title_short A combined gene expression and functional study reveals the crosstalk between N-Myc and differentiation-inducing microRNAs in neuroblastoma cells
title_sort combined gene expression and functional study reveals the crosstalk between n-myc and differentiation-inducing micrornas in neuroblastoma cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5346721/
https://www.ncbi.nlm.nih.gov/pubmed/27764804
http://dx.doi.org/10.18632/oncotarget.12676
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