Cargando…
The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1
The stromal microenvironment controls response to injury and inflammation, and is also an important determinant of cancer cell behavior. However, our understanding of its modulation by miRNA (miR) and their respective targets is still sparse. Here, we identified the miR-25-93-106b cluster and two ne...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5400610/ https://www.ncbi.nlm.nih.gov/pubmed/28423491 http://dx.doi.org/10.18632/oncotarget.15450 |
_version_ | 1783230883552034816 |
---|---|
author | Cioffi, Michele Trabulo, Sara M Vallespinos, Mireia Raj, Deepak Kheir, Tony Bou Lin, Meng-Lay Begum, Julfa Baker, Ann-Marie Amgheib, Ala Saif, Jaimy Perez, Manuel Soriano, Joaquim Desco, Manuel Gomez-Gaviro, Maria Victoria Cusso, Lorena Megias, Diego Aicher, Alexandra Heeschen, Christopher |
author_facet | Cioffi, Michele Trabulo, Sara M Vallespinos, Mireia Raj, Deepak Kheir, Tony Bou Lin, Meng-Lay Begum, Julfa Baker, Ann-Marie Amgheib, Ala Saif, Jaimy Perez, Manuel Soriano, Joaquim Desco, Manuel Gomez-Gaviro, Maria Victoria Cusso, Lorena Megias, Diego Aicher, Alexandra Heeschen, Christopher |
author_sort | Cioffi, Michele |
collection | PubMed |
description | The stromal microenvironment controls response to injury and inflammation, and is also an important determinant of cancer cell behavior. However, our understanding of its modulation by miRNA (miR) and their respective targets is still sparse. Here, we identified the miR-25-93-106b cluster and two new target genes as critical drivers for metastasis and immune evasion of cancer cells. Using miR-25-93-106b knockout mice or antagomiRs, we demonstrated regulation of the production of the chemoattractant CXCL12 controlling bone marrow metastasis. Moreover, we identified the immune checkpoint PD-L1 (CD274) as a novel miR-93/106b target playing a central role in diminishing tumor immunity. Eventually, upregulation of miR-93 and miR-106b via miR-mimics or treatment with an epigenetic reader domain (BET) inhibitor resulted in diminished expression of CXCL12 and PD-L1. These data suggest a potential new therapeutic rationale for use of BET inhibitors for dual targeting of cancers with strong immunosuppressive and metastatic phenotypes. |
format | Online Article Text |
id | pubmed-5400610 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-54006102017-05-03 The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 Cioffi, Michele Trabulo, Sara M Vallespinos, Mireia Raj, Deepak Kheir, Tony Bou Lin, Meng-Lay Begum, Julfa Baker, Ann-Marie Amgheib, Ala Saif, Jaimy Perez, Manuel Soriano, Joaquim Desco, Manuel Gomez-Gaviro, Maria Victoria Cusso, Lorena Megias, Diego Aicher, Alexandra Heeschen, Christopher Oncotarget Research Paper The stromal microenvironment controls response to injury and inflammation, and is also an important determinant of cancer cell behavior. However, our understanding of its modulation by miRNA (miR) and their respective targets is still sparse. Here, we identified the miR-25-93-106b cluster and two new target genes as critical drivers for metastasis and immune evasion of cancer cells. Using miR-25-93-106b knockout mice or antagomiRs, we demonstrated regulation of the production of the chemoattractant CXCL12 controlling bone marrow metastasis. Moreover, we identified the immune checkpoint PD-L1 (CD274) as a novel miR-93/106b target playing a central role in diminishing tumor immunity. Eventually, upregulation of miR-93 and miR-106b via miR-mimics or treatment with an epigenetic reader domain (BET) inhibitor resulted in diminished expression of CXCL12 and PD-L1. These data suggest a potential new therapeutic rationale for use of BET inhibitors for dual targeting of cancers with strong immunosuppressive and metastatic phenotypes. Impact Journals LLC 2017-02-17 /pmc/articles/PMC5400610/ /pubmed/28423491 http://dx.doi.org/10.18632/oncotarget.15450 Text en Copyright: © 2017 Cioffi 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 Cioffi, Michele Trabulo, Sara M Vallespinos, Mireia Raj, Deepak Kheir, Tony Bou Lin, Meng-Lay Begum, Julfa Baker, Ann-Marie Amgheib, Ala Saif, Jaimy Perez, Manuel Soriano, Joaquim Desco, Manuel Gomez-Gaviro, Maria Victoria Cusso, Lorena Megias, Diego Aicher, Alexandra Heeschen, Christopher The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title | The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title_full | The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title_fullStr | The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title_full_unstemmed | The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title_short | The miR-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of CXCL12 and PD-L1 |
title_sort | mir-25-93-106b cluster regulates tumor metastasis and immune evasion via modulation of cxcl12 and pd-l1 |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5400610/ https://www.ncbi.nlm.nih.gov/pubmed/28423491 http://dx.doi.org/10.18632/oncotarget.15450 |
work_keys_str_mv | AT cioffimichele themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT trabulosaram themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT vallespinosmireia themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT rajdeepak themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT kheirtonybou themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT linmenglay themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT begumjulfa themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT bakerannmarie themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT amgheibala themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT saifjaimy themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT perezmanuel themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT sorianojoaquim themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT descomanuel themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT gomezgaviromariavictoria themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT cussolorena themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT megiasdiego themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT aicheralexandra themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT heeschenchristopher themir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT cioffimichele mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT trabulosaram mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT vallespinosmireia mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT rajdeepak mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT kheirtonybou mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT linmenglay mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT begumjulfa mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT bakerannmarie mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT amgheibala mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT saifjaimy mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT perezmanuel mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT sorianojoaquim mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT descomanuel mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT gomezgaviromariavictoria mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT cussolorena mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT megiasdiego mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT aicheralexandra mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 AT heeschenchristopher mir2593106bclusterregulatestumormetastasisandimmuneevasionviamodulationofcxcl12andpdl1 |