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Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance

Mice with an impaired Type I interferon (IFN) signaling (IFNAR1- and IFNβ-deficient mice) display an increased susceptibility toward v-ABL-induced B-cell leukemia/lymphoma. The enhanced leukemogenesis in the absence of an intact Type I IFN signaling is caused by alterations within the tumor environm...

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Autores principales: Mizutani, Tatsuaki, Neugebauer, Nina, Putz, Eva M., Moritz, Nadine, Simma, Olivia, Zebedin-Brandl, Eva, Gotthardt, Dagmar, Warsch, Wolfgang, Eckelhart, Eva, Kantner, Hans-Peter, Kalinke, Ulrich, Lienenklaus, Stefan, Weiss, Siegfried, Strobl, Birgit, Müller, Mathias, Sexl, Veronika, Stoiber, Dagmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3494617/
https://www.ncbi.nlm.nih.gov/pubmed/23170251
http://dx.doi.org/10.4161/onci.21284
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author Mizutani, Tatsuaki
Neugebauer, Nina
Putz, Eva M.
Moritz, Nadine
Simma, Olivia
Zebedin-Brandl, Eva
Gotthardt, Dagmar
Warsch, Wolfgang
Eckelhart, Eva
Kantner, Hans-Peter
Kalinke, Ulrich
Lienenklaus, Stefan
Weiss, Siegfried
Strobl, Birgit
Müller, Mathias
Sexl, Veronika
Stoiber, Dagmar
author_facet Mizutani, Tatsuaki
Neugebauer, Nina
Putz, Eva M.
Moritz, Nadine
Simma, Olivia
Zebedin-Brandl, Eva
Gotthardt, Dagmar
Warsch, Wolfgang
Eckelhart, Eva
Kantner, Hans-Peter
Kalinke, Ulrich
Lienenklaus, Stefan
Weiss, Siegfried
Strobl, Birgit
Müller, Mathias
Sexl, Veronika
Stoiber, Dagmar
author_sort Mizutani, Tatsuaki
collection PubMed
description Mice with an impaired Type I interferon (IFN) signaling (IFNAR1- and IFNβ-deficient mice) display an increased susceptibility toward v-ABL-induced B-cell leukemia/lymphoma. The enhanced leukemogenesis in the absence of an intact Type I IFN signaling is caused by alterations within the tumor environment. Deletion of Ifnar1 in tumor cells (as obtained in Ifnar1(f/f) CD19-Cre mice) failed to impact on disease latency or type. In line with this observation, the initial transformation and proliferative capacity of tumor cells were unaltered irrespective of whether the cells expressed IFNAR1 or not. v-ABL-induced leukemogenesis is mainly subjected to natural killer (NK) cell-mediated tumor surveillance. Thus, we concentrated on NK cell functions in IFNAR1 deficient animals. Ifnar1(-/-) NK cells displayed maturation defects as well as an impaired cytolytic activity. When we deleted Ifnar1 selectively in mature NK cells (by crossing Ncr1-iCre mice to Ifnar1(f/f) animals), maturation was not altered. However, NK cells derived from Ifnar1(f/f) Ncr1-iCre mice showed a significant cytolytic defect in vitro against the hematopoietic cell lines YAC-1 and RMA-S, but not against the melanoma cell line B16F10. Interestingly, this defect was not related to an in vivo phenotype as v-ABL-induced leukemogenesis was unaltered in Ifnar1(f/f )Ncr1-iCre compared with Ifnar1(f/f) control mice. Moreover, the ability of Ifnar1(f/f) Ncr1-iCre NK cells to kill B16F10 melanoma cells was unaltered, both in vitro and in vivo. Our data reveal that despite the necessity for Type I IFN in NK cell maturation the expression of IFNAR1 on mature murine NK cells is not required for efficient tumor surveillance.
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spelling pubmed-34946172012-11-20 Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance Mizutani, Tatsuaki Neugebauer, Nina Putz, Eva M. Moritz, Nadine Simma, Olivia Zebedin-Brandl, Eva Gotthardt, Dagmar Warsch, Wolfgang Eckelhart, Eva Kantner, Hans-Peter Kalinke, Ulrich Lienenklaus, Stefan Weiss, Siegfried Strobl, Birgit Müller, Mathias Sexl, Veronika Stoiber, Dagmar Oncoimmunology Research Paper Mice with an impaired Type I interferon (IFN) signaling (IFNAR1- and IFNβ-deficient mice) display an increased susceptibility toward v-ABL-induced B-cell leukemia/lymphoma. The enhanced leukemogenesis in the absence of an intact Type I IFN signaling is caused by alterations within the tumor environment. Deletion of Ifnar1 in tumor cells (as obtained in Ifnar1(f/f) CD19-Cre mice) failed to impact on disease latency or type. In line with this observation, the initial transformation and proliferative capacity of tumor cells were unaltered irrespective of whether the cells expressed IFNAR1 or not. v-ABL-induced leukemogenesis is mainly subjected to natural killer (NK) cell-mediated tumor surveillance. Thus, we concentrated on NK cell functions in IFNAR1 deficient animals. Ifnar1(-/-) NK cells displayed maturation defects as well as an impaired cytolytic activity. When we deleted Ifnar1 selectively in mature NK cells (by crossing Ncr1-iCre mice to Ifnar1(f/f) animals), maturation was not altered. However, NK cells derived from Ifnar1(f/f) Ncr1-iCre mice showed a significant cytolytic defect in vitro against the hematopoietic cell lines YAC-1 and RMA-S, but not against the melanoma cell line B16F10. Interestingly, this defect was not related to an in vivo phenotype as v-ABL-induced leukemogenesis was unaltered in Ifnar1(f/f )Ncr1-iCre compared with Ifnar1(f/f) control mice. Moreover, the ability of Ifnar1(f/f) Ncr1-iCre NK cells to kill B16F10 melanoma cells was unaltered, both in vitro and in vivo. Our data reveal that despite the necessity for Type I IFN in NK cell maturation the expression of IFNAR1 on mature murine NK cells is not required for efficient tumor surveillance. Landes Bioscience 2012-10-01 /pmc/articles/PMC3494617/ /pubmed/23170251 http://dx.doi.org/10.4161/onci.21284 Text en Copyright © 2012 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Research Paper
Mizutani, Tatsuaki
Neugebauer, Nina
Putz, Eva M.
Moritz, Nadine
Simma, Olivia
Zebedin-Brandl, Eva
Gotthardt, Dagmar
Warsch, Wolfgang
Eckelhart, Eva
Kantner, Hans-Peter
Kalinke, Ulrich
Lienenklaus, Stefan
Weiss, Siegfried
Strobl, Birgit
Müller, Mathias
Sexl, Veronika
Stoiber, Dagmar
Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title_full Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title_fullStr Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title_full_unstemmed Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title_short Conditional IFNAR1 ablation reveals distinct requirements of Type I IFN signaling for NK cell maturation and tumor surveillance
title_sort conditional ifnar1 ablation reveals distinct requirements of type i ifn signaling for nk cell maturation and tumor surveillance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3494617/
https://www.ncbi.nlm.nih.gov/pubmed/23170251
http://dx.doi.org/10.4161/onci.21284
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