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Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3

The RNA-binding protein Musashi-1 (MSI1) exerts essential roles in multiple cellular functions, such as maintenance of self-renewal and pluripotency of stem cells. MSI1 overexpression has been observed in several tumor tissues, including glioblastoma (GBM), and is considered as a well-established ma...

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Autores principales: Chen, Hsiao-Yun, Lin, Liang-Ting, Wang, Mong-Lien, Laurent, Benoit, Hsu, Chih-Hung, Pan, Chih-Ming, Jiang, Wan-Ru, Chen, Pau-Yuan, Ma, Hsin-I, Chen, Yi-Wei, Huang, Pin-I, Chiou, Arthur, Chiou, Shih-Hwa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5562834/
https://www.ncbi.nlm.nih.gov/pubmed/28821879
http://dx.doi.org/10.1038/s41598-017-09504-7
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author Chen, Hsiao-Yun
Lin, Liang-Ting
Wang, Mong-Lien
Laurent, Benoit
Hsu, Chih-Hung
Pan, Chih-Ming
Jiang, Wan-Ru
Chen, Pau-Yuan
Ma, Hsin-I
Chen, Yi-Wei
Huang, Pin-I
Chiou, Arthur
Chiou, Shih-Hwa
author_facet Chen, Hsiao-Yun
Lin, Liang-Ting
Wang, Mong-Lien
Laurent, Benoit
Hsu, Chih-Hung
Pan, Chih-Ming
Jiang, Wan-Ru
Chen, Pau-Yuan
Ma, Hsin-I
Chen, Yi-Wei
Huang, Pin-I
Chiou, Arthur
Chiou, Shih-Hwa
author_sort Chen, Hsiao-Yun
collection PubMed
description The RNA-binding protein Musashi-1 (MSI1) exerts essential roles in multiple cellular functions, such as maintenance of self-renewal and pluripotency of stem cells. MSI1 overexpression has been observed in several tumor tissues, including glioblastoma (GBM), and is considered as a well-established marker for tumor metastasis and recurrence. However, the molecular mechanisms by which MSI1 regulates cell migration are still undetermined. Here we reported that MSI1 alters cell morphology, promotes cell migration, and increases viscoelasticity of GBM cells. We also found that MSI1 directly binds to the 3′UTR of Tensin 3 (TNS3) mRNA, a negative regulator of cell migration, to inhibit its translation. Additionally, we identified that RhoA-GTP could be a potential regulator in MSI1/TNS3-mediated cell migration and morphological changes. In a xenograft animal model, high expression ratio of MSI1 to TNS3 enhanced GBM tumor migration. We also confirmed that MSI1 and TNS3 expressions are mutually exclusive in migratory tumor lesions, and GBM patients with MSI1(high)/TNS3(low) pattern tend to have poor clinical outcome. Taken together, our findings suggested a critical role of MSI1-TNS3 axis in regulating GBM migration and highlighted that the ratio of MSI1/TNS3 could predict metastatic and survival outcome of GBM patients.
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spelling pubmed-55628342017-08-21 Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3 Chen, Hsiao-Yun Lin, Liang-Ting Wang, Mong-Lien Laurent, Benoit Hsu, Chih-Hung Pan, Chih-Ming Jiang, Wan-Ru Chen, Pau-Yuan Ma, Hsin-I Chen, Yi-Wei Huang, Pin-I Chiou, Arthur Chiou, Shih-Hwa Sci Rep Article The RNA-binding protein Musashi-1 (MSI1) exerts essential roles in multiple cellular functions, such as maintenance of self-renewal and pluripotency of stem cells. MSI1 overexpression has been observed in several tumor tissues, including glioblastoma (GBM), and is considered as a well-established marker for tumor metastasis and recurrence. However, the molecular mechanisms by which MSI1 regulates cell migration are still undetermined. Here we reported that MSI1 alters cell morphology, promotes cell migration, and increases viscoelasticity of GBM cells. We also found that MSI1 directly binds to the 3′UTR of Tensin 3 (TNS3) mRNA, a negative regulator of cell migration, to inhibit its translation. Additionally, we identified that RhoA-GTP could be a potential regulator in MSI1/TNS3-mediated cell migration and morphological changes. In a xenograft animal model, high expression ratio of MSI1 to TNS3 enhanced GBM tumor migration. We also confirmed that MSI1 and TNS3 expressions are mutually exclusive in migratory tumor lesions, and GBM patients with MSI1(high)/TNS3(low) pattern tend to have poor clinical outcome. Taken together, our findings suggested a critical role of MSI1-TNS3 axis in regulating GBM migration and highlighted that the ratio of MSI1/TNS3 could predict metastatic and survival outcome of GBM patients. Nature Publishing Group UK 2017-08-18 /pmc/articles/PMC5562834/ /pubmed/28821879 http://dx.doi.org/10.1038/s41598-017-09504-7 Text en © The Author(s) 2017 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Chen, Hsiao-Yun
Lin, Liang-Ting
Wang, Mong-Lien
Laurent, Benoit
Hsu, Chih-Hung
Pan, Chih-Ming
Jiang, Wan-Ru
Chen, Pau-Yuan
Ma, Hsin-I
Chen, Yi-Wei
Huang, Pin-I
Chiou, Arthur
Chiou, Shih-Hwa
Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title_full Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title_fullStr Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title_full_unstemmed Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title_short Musashi-1 Enhances Glioblastoma Cell Migration and Cytoskeletal Dynamics through Translational Inhibition of Tensin3
title_sort musashi-1 enhances glioblastoma cell migration and cytoskeletal dynamics through translational inhibition of tensin3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5562834/
https://www.ncbi.nlm.nih.gov/pubmed/28821879
http://dx.doi.org/10.1038/s41598-017-09504-7
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