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RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion

Activation of Snail1 signaling promotes the migration and invasion of multiple tumors, including glioblastoma multiforme (GBM). However, the molecular mechanism that augments Snail1 signaling during GBM cell migration and invasion remains largely unknown. Identification of the factors that regulate...

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Autores principales: Liu, Baohui, Dong, Huimin, Lin, Xi, Yang, Xiangsheng, Yue, Xiaojing, Yang, Jian, Li, Yuntao, Wu, Liquan, Zhu, Xiaonan, Zhang, Shenqi, Tian, Daofeng, Wang, Junmin, Cai, Qiang, Mao, Shanping, Chen, Qianxue, Chang, Jiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347701/
https://www.ncbi.nlm.nih.gov/pubmed/27705942
http://dx.doi.org/10.18632/oncotarget.12396
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author Liu, Baohui
Dong, Huimin
Lin, Xi
Yang, Xiangsheng
Yue, Xiaojing
Yang, Jian
Li, Yuntao
Wu, Liquan
Zhu, Xiaonan
Zhang, Shenqi
Tian, Daofeng
Wang, Junmin
Cai, Qiang
Mao, Shanping
Chen, Qianxue
Chang, Jiang
author_facet Liu, Baohui
Dong, Huimin
Lin, Xi
Yang, Xiangsheng
Yue, Xiaojing
Yang, Jian
Li, Yuntao
Wu, Liquan
Zhu, Xiaonan
Zhang, Shenqi
Tian, Daofeng
Wang, Junmin
Cai, Qiang
Mao, Shanping
Chen, Qianxue
Chang, Jiang
author_sort Liu, Baohui
collection PubMed
description Activation of Snail1 signaling promotes the migration and invasion of multiple tumors, including glioblastoma multiforme (GBM). However, the molecular mechanism that augments Snail1 signaling during GBM cell migration and invasion remains largely unknown. Identification of the factors that regulate Snail1 signaling is critical to block tumor cell migration and invasion. By screening human GBM specimens, we found that the expression levels of small GTPase RND3 positively correlated with the expression levels of E-cadherin and claudin, the glioblastoma migration biomarkers negatively regulated by Snail1. Downregulation of E-cadherin and claudin has been associated with the migration and invasion of GBM cells. We demonstrated that RND3 functioned as an endogenous inhibitor of the Snail-directed transcriptional regulation. RND3 physically interacted with Snail1 protein, enhanced Snail1 ubiquitination, and facilitated the protein degradation. Forced expression of RND3 inhibited Snail1 activity, which in turn blocked glioblastoma cell migration and invasion in vitro in cell culture and in vivo in GBM xenograft mice. In contrast, downregulation of RND3 augmented Snail1 activity, and subsequently decreased E-cadherin expression, eventually promoted glioblastoma cell migration and invasion. The pro-migration induced by RND3 downregulation was attenuated by Snail1 knockdown. The findings partially explain why Snail1 activity is augmented in GBM, and defines a new function of RND3 in GBM cell migration and invasion.
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spelling pubmed-53477012017-03-31 RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion Liu, Baohui Dong, Huimin Lin, Xi Yang, Xiangsheng Yue, Xiaojing Yang, Jian Li, Yuntao Wu, Liquan Zhu, Xiaonan Zhang, Shenqi Tian, Daofeng Wang, Junmin Cai, Qiang Mao, Shanping Chen, Qianxue Chang, Jiang Oncotarget Research Paper Activation of Snail1 signaling promotes the migration and invasion of multiple tumors, including glioblastoma multiforme (GBM). However, the molecular mechanism that augments Snail1 signaling during GBM cell migration and invasion remains largely unknown. Identification of the factors that regulate Snail1 signaling is critical to block tumor cell migration and invasion. By screening human GBM specimens, we found that the expression levels of small GTPase RND3 positively correlated with the expression levels of E-cadherin and claudin, the glioblastoma migration biomarkers negatively regulated by Snail1. Downregulation of E-cadherin and claudin has been associated with the migration and invasion of GBM cells. We demonstrated that RND3 functioned as an endogenous inhibitor of the Snail-directed transcriptional regulation. RND3 physically interacted with Snail1 protein, enhanced Snail1 ubiquitination, and facilitated the protein degradation. Forced expression of RND3 inhibited Snail1 activity, which in turn blocked glioblastoma cell migration and invasion in vitro in cell culture and in vivo in GBM xenograft mice. In contrast, downregulation of RND3 augmented Snail1 activity, and subsequently decreased E-cadherin expression, eventually promoted glioblastoma cell migration and invasion. The pro-migration induced by RND3 downregulation was attenuated by Snail1 knockdown. The findings partially explain why Snail1 activity is augmented in GBM, and defines a new function of RND3 in GBM cell migration and invasion. Impact Journals LLC 2016-10-01 /pmc/articles/PMC5347701/ /pubmed/27705942 http://dx.doi.org/10.18632/oncotarget.12396 Text en Copyright: © 2016 Liu 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
Liu, Baohui
Dong, Huimin
Lin, Xi
Yang, Xiangsheng
Yue, Xiaojing
Yang, Jian
Li, Yuntao
Wu, Liquan
Zhu, Xiaonan
Zhang, Shenqi
Tian, Daofeng
Wang, Junmin
Cai, Qiang
Mao, Shanping
Chen, Qianxue
Chang, Jiang
RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title_full RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title_fullStr RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title_full_unstemmed RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title_short RND3 promotes Snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
title_sort rnd3 promotes snail 1 protein degradation and inhibits glioblastoma cell migration and invasion
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347701/
https://www.ncbi.nlm.nih.gov/pubmed/27705942
http://dx.doi.org/10.18632/oncotarget.12396
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