miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC

TUSC3 resides on chromosome 8p which is frequently deleted in advanced stage tumors. Here, the authors show that TUSC3 loss mediated by miR-224/-520c promotes NSCLC metastasis where it enhances ATF-6α-dependent UPR and HRD-1 dependent ERAD, which in turn suppress p53-NM23H1/2 tumor suppressor pathwa...

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Autores principales: Young-Jun Jeon, Taewan Kim, Dongju Park, Gerard J. Nuovo, Siyeon Rhee, Pooja Joshi, Bum-Kyu Lee, Johan Jeong, Sung-suk Suh, Jeff E. Grotzke, Sung-Hak Kim, Jieun Song, Hosung Sim, Yonghwan Kim, Yong Peng, Youngtae Jeong, Michela Garofalo, Nicola Zanesi, Jonghwan Kim, Guang Liang, Ichiro Nakano, Peter Cresswell, Patrick Nana-Sinkam, Ri Cui, Carlo M. Croce
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/20aea16a00a84e518d6ba422033dbee0
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spelling oai:doaj.org-article:20aea16a00a84e518d6ba422033dbee02021-12-02T17:33:06ZmiRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC10.1038/s41467-018-07561-82041-1723https://doaj.org/article/20aea16a00a84e518d6ba422033dbee02018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07561-8https://doaj.org/toc/2041-1723TUSC3 resides on chromosome 8p which is frequently deleted in advanced stage tumors. Here, the authors show that TUSC3 loss mediated by miR-224/-520c promotes NSCLC metastasis where it enhances ATF-6α-dependent UPR and HRD-1 dependent ERAD, which in turn suppress p53-NM23H1/2 tumor suppressor pathway.Young-Jun JeonTaewan KimDongju ParkGerard J. NuovoSiyeon RheePooja JoshiBum-Kyu LeeJohan JeongSung-suk SuhJeff E. GrotzkeSung-Hak KimJieun SongHosung SimYonghwan KimYong PengYoungtae JeongMichela GarofaloNicola ZanesiJonghwan KimGuang LiangIchiro NakanoPeter CresswellPatrick Nana-SinkamRi CuiCarlo M. CroceNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Young-Jun Jeon
Taewan Kim
Dongju Park
Gerard J. Nuovo
Siyeon Rhee
Pooja Joshi
Bum-Kyu Lee
Johan Jeong
Sung-suk Suh
Jeff E. Grotzke
Sung-Hak Kim
Jieun Song
Hosung Sim
Yonghwan Kim
Yong Peng
Youngtae Jeong
Michela Garofalo
Nicola Zanesi
Jonghwan Kim
Guang Liang
Ichiro Nakano
Peter Cresswell
Patrick Nana-Sinkam
Ri Cui
Carlo M. Croce
miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
description TUSC3 resides on chromosome 8p which is frequently deleted in advanced stage tumors. Here, the authors show that TUSC3 loss mediated by miR-224/-520c promotes NSCLC metastasis where it enhances ATF-6α-dependent UPR and HRD-1 dependent ERAD, which in turn suppress p53-NM23H1/2 tumor suppressor pathway.
format article
author Young-Jun Jeon
Taewan Kim
Dongju Park
Gerard J. Nuovo
Siyeon Rhee
Pooja Joshi
Bum-Kyu Lee
Johan Jeong
Sung-suk Suh
Jeff E. Grotzke
Sung-Hak Kim
Jieun Song
Hosung Sim
Yonghwan Kim
Yong Peng
Youngtae Jeong
Michela Garofalo
Nicola Zanesi
Jonghwan Kim
Guang Liang
Ichiro Nakano
Peter Cresswell
Patrick Nana-Sinkam
Ri Cui
Carlo M. Croce
author_facet Young-Jun Jeon
Taewan Kim
Dongju Park
Gerard J. Nuovo
Siyeon Rhee
Pooja Joshi
Bum-Kyu Lee
Johan Jeong
Sung-suk Suh
Jeff E. Grotzke
Sung-Hak Kim
Jieun Song
Hosung Sim
Yonghwan Kim
Yong Peng
Youngtae Jeong
Michela Garofalo
Nicola Zanesi
Jonghwan Kim
Guang Liang
Ichiro Nakano
Peter Cresswell
Patrick Nana-Sinkam
Ri Cui
Carlo M. Croce
author_sort Young-Jun Jeon
title miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
title_short miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
title_full miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
title_fullStr miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
title_full_unstemmed miRNA-mediated TUSC3 deficiency enhances UPR and ERAD to promote metastatic potential of NSCLC
title_sort mirna-mediated tusc3 deficiency enhances upr and erad to promote metastatic potential of nsclc
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/20aea16a00a84e518d6ba422033dbee0
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