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Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition

Here we demonstrate for the first time that targeted inhibition of nuclear exporter protein exportin 1 (XPO1) also known as chromosome maintenance region 1 (CRM1) by Selective Inhibitor of Nuclear Export (SINE) compounds results in reversal of EMT in snail-transduced primary human mammary epithelial...

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Autores principales: Azmi, Asfar S., Muqbil, Irfana, Wu, Jack, Aboukameel, Amro, Senapedis, William, Baloglu, Erkan, Bollig-Fischer, Aliccia, Dyson, Gregory, Kauffman, Michael, Landesman, Yosef, Shacham, Sharon, Philip, Philip A., Mohammad, Ramzi M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4633607/
https://www.ncbi.nlm.nih.gov/pubmed/26536918
http://dx.doi.org/10.1038/srep16077
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author Azmi, Asfar S.
Muqbil, Irfana
Wu, Jack
Aboukameel, Amro
Senapedis, William
Baloglu, Erkan
Bollig-Fischer, Aliccia
Dyson, Gregory
Kauffman, Michael
Landesman, Yosef
Shacham, Sharon
Philip, Philip A.
Mohammad, Ramzi M.
author_facet Azmi, Asfar S.
Muqbil, Irfana
Wu, Jack
Aboukameel, Amro
Senapedis, William
Baloglu, Erkan
Bollig-Fischer, Aliccia
Dyson, Gregory
Kauffman, Michael
Landesman, Yosef
Shacham, Sharon
Philip, Philip A.
Mohammad, Ramzi M.
author_sort Azmi, Asfar S.
collection PubMed
description Here we demonstrate for the first time that targeted inhibition of nuclear exporter protein exportin 1 (XPO1) also known as chromosome maintenance region 1 (CRM1) by Selective Inhibitor of Nuclear Export (SINE) compounds results in reversal of EMT in snail-transduced primary human mammary epithelial cells (HMECs). SINE compounds selinexor (KPT-330) and KPT-185, leptomycin B (LMB as +ve control) but not KPT-301 (–ve control) reverse EMT, suppress mesenchymal markers and consequently induce growth inhibition, apoptosis and prevent spheroid formation. SINE treatment resulted in nuclear retention of snail regulator FBXL5 that was concurrent with suppression of snail and down-regulation of mesenchymal markers. FBXL5 siRNA or transfection with cys528 mut-Xpo1 (lacking SINE binding site) markedly abrogated SINE activity highlighting an XPO1 and FBXL5 mediated mechanism of action. Silencing XPO1 or snail caused re-expression of FBXL5 as well as EMT reversal. Pathway analysis on SINE treated HMECs further verified the involvement of additional F-Box family proteins and confirmed the suppression of snail network. Oral administration of selinexor (15 mg/kg p.o. QoDx3/week for 3weeks) resulted in complete cures (no tumor rebound at 120 days) of HMLER-Snail xenografts. These findings raise the unique possibility of blocking EMT at the nuclear pore.
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spelling pubmed-46336072015-11-05 Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition Azmi, Asfar S. Muqbil, Irfana Wu, Jack Aboukameel, Amro Senapedis, William Baloglu, Erkan Bollig-Fischer, Aliccia Dyson, Gregory Kauffman, Michael Landesman, Yosef Shacham, Sharon Philip, Philip A. Mohammad, Ramzi M. Sci Rep Article Here we demonstrate for the first time that targeted inhibition of nuclear exporter protein exportin 1 (XPO1) also known as chromosome maintenance region 1 (CRM1) by Selective Inhibitor of Nuclear Export (SINE) compounds results in reversal of EMT in snail-transduced primary human mammary epithelial cells (HMECs). SINE compounds selinexor (KPT-330) and KPT-185, leptomycin B (LMB as +ve control) but not KPT-301 (–ve control) reverse EMT, suppress mesenchymal markers and consequently induce growth inhibition, apoptosis and prevent spheroid formation. SINE treatment resulted in nuclear retention of snail regulator FBXL5 that was concurrent with suppression of snail and down-regulation of mesenchymal markers. FBXL5 siRNA or transfection with cys528 mut-Xpo1 (lacking SINE binding site) markedly abrogated SINE activity highlighting an XPO1 and FBXL5 mediated mechanism of action. Silencing XPO1 or snail caused re-expression of FBXL5 as well as EMT reversal. Pathway analysis on SINE treated HMECs further verified the involvement of additional F-Box family proteins and confirmed the suppression of snail network. Oral administration of selinexor (15 mg/kg p.o. QoDx3/week for 3weeks) resulted in complete cures (no tumor rebound at 120 days) of HMLER-Snail xenografts. These findings raise the unique possibility of blocking EMT at the nuclear pore. Nature Publishing Group 2015-11-05 /pmc/articles/PMC4633607/ /pubmed/26536918 http://dx.doi.org/10.1038/srep16077 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Azmi, Asfar S.
Muqbil, Irfana
Wu, Jack
Aboukameel, Amro
Senapedis, William
Baloglu, Erkan
Bollig-Fischer, Aliccia
Dyson, Gregory
Kauffman, Michael
Landesman, Yosef
Shacham, Sharon
Philip, Philip A.
Mohammad, Ramzi M.
Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title_full Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title_fullStr Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title_full_unstemmed Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title_short Targeting the Nuclear Export Protein XPO1/CRM1 Reverses Epithelial to Mesenchymal Transition
title_sort targeting the nuclear export protein xpo1/crm1 reverses epithelial to mesenchymal transition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4633607/
https://www.ncbi.nlm.nih.gov/pubmed/26536918
http://dx.doi.org/10.1038/srep16077
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