Cargando…

Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression

Emerging studies have shown that the expression of AR splice variants (ARv) lacking ligand-binding domain is associated with castrate-resistant prostate cancer (CRPC) and higher risk of tumor metastasis and recurrence. Nuclear export protein XPO1 regulates the nuclear localization of many proteins i...

Descripción completa

Detalles Bibliográficos
Autores principales: Aboukameel, Amro, Muqbil, Irfana, Baloglu, Erkan, Senapedis, William, Landesman, Yosef, Argueta, Christian, Kauffman, Michael, Chang, Hua, Kashyap, Trinayan, Shacham, Sharon, Neggers, Jasper E., Daelemans, Dirk, Heath, Elisabeth I., Azmi, Asfar S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6219671/
https://www.ncbi.nlm.nih.gov/pubmed/30450161
http://dx.doi.org/10.18632/oncotarget.26239
_version_ 1783368695620304896
author Aboukameel, Amro
Muqbil, Irfana
Baloglu, Erkan
Senapedis, William
Landesman, Yosef
Argueta, Christian
Kauffman, Michael
Chang, Hua
Kashyap, Trinayan
Shacham, Sharon
Neggers, Jasper E.
Daelemans, Dirk
Heath, Elisabeth I.
Azmi, Asfar S.
author_facet Aboukameel, Amro
Muqbil, Irfana
Baloglu, Erkan
Senapedis, William
Landesman, Yosef
Argueta, Christian
Kauffman, Michael
Chang, Hua
Kashyap, Trinayan
Shacham, Sharon
Neggers, Jasper E.
Daelemans, Dirk
Heath, Elisabeth I.
Azmi, Asfar S.
author_sort Aboukameel, Amro
collection PubMed
description Emerging studies have shown that the expression of AR splice variants (ARv) lacking ligand-binding domain is associated with castrate-resistant prostate cancer (CRPC) and higher risk of tumor metastasis and recurrence. Nuclear export protein XPO1 regulates the nuclear localization of many proteins including tumor suppressor proteins. Increased XPO1 in prostate cancer is associated with a high Gleason score and bone metastasis. In this study, we found that high expression of AR splice variant 7 (AR-v7) was correlated with increased XPO1 expression. Silencing of XPO1 by RNAi or treatment with Selective Inhibitor of Nuclear Export (SINE) compounds selinexor and eltanexor (KPT-8602) down-regulated the expression of AR, AR-v7 and ARv567es at mRNA and protein levels. XPO1 silencing also inhibited the expression of AR and ARv regulators including FOXA1, Src, Vav3, MED1 and Sam68, leading to the suppression of ARv and AR target genes, UBE2C and PSA. By targeting XPO1/ARv signaling, SINE suppressed prostate cancer (PCa) growth in vitro and in vivo and potentiated the anti-cancer activity of anti-AR agents, enzalutamide and abiraterone. Therefore, XPO1 inhibition could be a novel promising agent used in combination with conventional chemotherapeutics and AR-targeted therapy for the better treatment of PCa, especially CRPC.
format Online
Article
Text
id pubmed-6219671
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-62196712018-11-16 Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression Aboukameel, Amro Muqbil, Irfana Baloglu, Erkan Senapedis, William Landesman, Yosef Argueta, Christian Kauffman, Michael Chang, Hua Kashyap, Trinayan Shacham, Sharon Neggers, Jasper E. Daelemans, Dirk Heath, Elisabeth I. Azmi, Asfar S. Oncotarget Research Paper Emerging studies have shown that the expression of AR splice variants (ARv) lacking ligand-binding domain is associated with castrate-resistant prostate cancer (CRPC) and higher risk of tumor metastasis and recurrence. Nuclear export protein XPO1 regulates the nuclear localization of many proteins including tumor suppressor proteins. Increased XPO1 in prostate cancer is associated with a high Gleason score and bone metastasis. In this study, we found that high expression of AR splice variant 7 (AR-v7) was correlated with increased XPO1 expression. Silencing of XPO1 by RNAi or treatment with Selective Inhibitor of Nuclear Export (SINE) compounds selinexor and eltanexor (KPT-8602) down-regulated the expression of AR, AR-v7 and ARv567es at mRNA and protein levels. XPO1 silencing also inhibited the expression of AR and ARv regulators including FOXA1, Src, Vav3, MED1 and Sam68, leading to the suppression of ARv and AR target genes, UBE2C and PSA. By targeting XPO1/ARv signaling, SINE suppressed prostate cancer (PCa) growth in vitro and in vivo and potentiated the anti-cancer activity of anti-AR agents, enzalutamide and abiraterone. Therefore, XPO1 inhibition could be a novel promising agent used in combination with conventional chemotherapeutics and AR-targeted therapy for the better treatment of PCa, especially CRPC. Impact Journals LLC 2018-10-19 /pmc/articles/PMC6219671/ /pubmed/30450161 http://dx.doi.org/10.18632/oncotarget.26239 Text en Copyright: © 2018 Aboukameel et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Aboukameel, Amro
Muqbil, Irfana
Baloglu, Erkan
Senapedis, William
Landesman, Yosef
Argueta, Christian
Kauffman, Michael
Chang, Hua
Kashyap, Trinayan
Shacham, Sharon
Neggers, Jasper E.
Daelemans, Dirk
Heath, Elisabeth I.
Azmi, Asfar S.
Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title_full Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title_fullStr Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title_full_unstemmed Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title_short Down-regulation of AR splice variants through XPO1 suppression contributes to the inhibition of prostate cancer progression
title_sort down-regulation of ar splice variants through xpo1 suppression contributes to the inhibition of prostate cancer progression
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6219671/
https://www.ncbi.nlm.nih.gov/pubmed/30450161
http://dx.doi.org/10.18632/oncotarget.26239
work_keys_str_mv AT aboukameelamro downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT muqbilirfana downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT balogluerkan downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT senapediswilliam downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT landesmanyosef downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT arguetachristian downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT kauffmanmichael downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT changhua downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT kashyaptrinayan downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT shachamsharon downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT neggersjaspere downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT daelemansdirk downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT heathelisabethi downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression
AT azmiasfars downregulationofarsplicevariantsthroughxpo1suppressioncontributestotheinhibitionofprostatecancerprogression