Cargando…
The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia
Natural killer (NK) cells are key components of the innate immune system, providing potent antitumor immunity. Here, we show that the TGF-β/SMAD signaling pathway is an important mechanism for NK cell immune evasion in childhood B-acute lymphoblastic leukemia (ALL). We characterized NK cells in 50 c...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823160/ https://www.ncbi.nlm.nih.gov/pubmed/26621337 http://dx.doi.org/10.1038/leu.2015.327 |
_version_ | 1782425868332695552 |
---|---|
author | Rouce, Rayne H. Shaim, Hila Sekine, Takuya Weber, Gerrit Ballard, Brandon Ku, Stephanie Barese, Cecilia Murali, Vineeth Wu, Meng-Fen Liu, Hao Shpall, Elizabeth J. Bollard, Catherine M. Rabin, Karen R. Rezvani, Katayoun |
author_facet | Rouce, Rayne H. Shaim, Hila Sekine, Takuya Weber, Gerrit Ballard, Brandon Ku, Stephanie Barese, Cecilia Murali, Vineeth Wu, Meng-Fen Liu, Hao Shpall, Elizabeth J. Bollard, Catherine M. Rabin, Karen R. Rezvani, Katayoun |
author_sort | Rouce, Rayne H. |
collection | PubMed |
description | Natural killer (NK) cells are key components of the innate immune system, providing potent antitumor immunity. Here, we show that the TGF-β/SMAD signaling pathway is an important mechanism for NK cell immune evasion in childhood B-acute lymphoblastic leukemia (ALL). We characterized NK cells in 50 consecutive children with B-ALL at diagnosis, end-Induction, and during maintenance therapy compared to age-matched controls. ALL-NK cells at diagnosis had an inhibitory phenotype associated with impaired function, most notably IFN-γ production and cytotoxicity. By maintenance, these phenotypic and functional abnormalities partially normalized, however, cytotoxicity against autologous blasts remained impaired. We identified ALL-derived TGF-β1 to be an important mediator of leukemia-induced NK cell dysfunction. The TGF-β/SMAD signaling pathway was constitutively activated in ALL-NK cells at diagnosis and end-induction when compared to healthy controls and patients during maintenance. Culture of ALL blasts with healthy NK cells induced NK dysfunction and an inhibitory phenotype, mediated by activation of the TGF-β/SMAD signaling pathway, and abrogated by blocking TGF-β. These data indicate that by regulating the TGF-β/SMAD pathway, ALL blasts induce changes in NK cells to evade innate immune surveillance, thus highlighting the importance of developing novel therapies to target this inhibitory pathway and restore antileukemic cytotoxicity. |
format | Online Article Text |
id | pubmed-4823160 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
record_format | MEDLINE/PubMed |
spelling | pubmed-48231602016-06-01 The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia Rouce, Rayne H. Shaim, Hila Sekine, Takuya Weber, Gerrit Ballard, Brandon Ku, Stephanie Barese, Cecilia Murali, Vineeth Wu, Meng-Fen Liu, Hao Shpall, Elizabeth J. Bollard, Catherine M. Rabin, Karen R. Rezvani, Katayoun Leukemia Article Natural killer (NK) cells are key components of the innate immune system, providing potent antitumor immunity. Here, we show that the TGF-β/SMAD signaling pathway is an important mechanism for NK cell immune evasion in childhood B-acute lymphoblastic leukemia (ALL). We characterized NK cells in 50 consecutive children with B-ALL at diagnosis, end-Induction, and during maintenance therapy compared to age-matched controls. ALL-NK cells at diagnosis had an inhibitory phenotype associated with impaired function, most notably IFN-γ production and cytotoxicity. By maintenance, these phenotypic and functional abnormalities partially normalized, however, cytotoxicity against autologous blasts remained impaired. We identified ALL-derived TGF-β1 to be an important mediator of leukemia-induced NK cell dysfunction. The TGF-β/SMAD signaling pathway was constitutively activated in ALL-NK cells at diagnosis and end-induction when compared to healthy controls and patients during maintenance. Culture of ALL blasts with healthy NK cells induced NK dysfunction and an inhibitory phenotype, mediated by activation of the TGF-β/SMAD signaling pathway, and abrogated by blocking TGF-β. These data indicate that by regulating the TGF-β/SMAD pathway, ALL blasts induce changes in NK cells to evade innate immune surveillance, thus highlighting the importance of developing novel therapies to target this inhibitory pathway and restore antileukemic cytotoxicity. 2015-12-01 2016-04 /pmc/articles/PMC4823160/ /pubmed/26621337 http://dx.doi.org/10.1038/leu.2015.327 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Rouce, Rayne H. Shaim, Hila Sekine, Takuya Weber, Gerrit Ballard, Brandon Ku, Stephanie Barese, Cecilia Murali, Vineeth Wu, Meng-Fen Liu, Hao Shpall, Elizabeth J. Bollard, Catherine M. Rabin, Karen R. Rezvani, Katayoun The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title | The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title_full | The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title_fullStr | The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title_full_unstemmed | The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title_short | The TGF-β/SMAD pathway is an important mechanism for NK cell immune evasion in childhood B acute lymphoblastic leukemia |
title_sort | tgf-β/smad pathway is an important mechanism for nk cell immune evasion in childhood b acute lymphoblastic leukemia |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823160/ https://www.ncbi.nlm.nih.gov/pubmed/26621337 http://dx.doi.org/10.1038/leu.2015.327 |
work_keys_str_mv | AT roucerayneh thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT shaimhila thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT sekinetakuya thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT webergerrit thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT ballardbrandon thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT kustephanie thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT baresececilia thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT muralivineeth thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT wumengfen thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT liuhao thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT shpallelizabethj thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT bollardcatherinem thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT rabinkarenr thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT rezvanikatayoun thetgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT roucerayneh tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT shaimhila tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT sekinetakuya tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT webergerrit tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT ballardbrandon tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT kustephanie tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT baresececilia tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT muralivineeth tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT wumengfen tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT liuhao tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT shpallelizabethj tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT bollardcatherinem tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT rabinkarenr tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia AT rezvanikatayoun tgfbsmadpathwayisanimportantmechanismfornkcellimmuneevasioninchildhoodbacutelymphoblasticleukemia |