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NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals

The cytomegalovirus resistance locus Cmv3 has been linked to an epistatic interaction between two loci: a Natural Killer (NK) cell receptor gene and the major histocompatibility complex class I (MHC-I) locus. To demonstrate the interaction between Cmv3 and H2(k), we generated double congenic mice be...

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Autores principales: Fodil-Cornu, Nassima, Loredo-Osti, J. Concepción, Vidal, Silvia M.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3080855/
https://www.ncbi.nlm.nih.gov/pubmed/21533075
http://dx.doi.org/10.1371/journal.pgen.1001368
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author Fodil-Cornu, Nassima
Loredo-Osti, J. Concepción
Vidal, Silvia M.
author_facet Fodil-Cornu, Nassima
Loredo-Osti, J. Concepción
Vidal, Silvia M.
author_sort Fodil-Cornu, Nassima
collection PubMed
description The cytomegalovirus resistance locus Cmv3 has been linked to an epistatic interaction between two loci: a Natural Killer (NK) cell receptor gene and the major histocompatibility complex class I (MHC-I) locus. To demonstrate the interaction between Cmv3 and H2(k), we generated double congenic mice between MA/My and BALB.K mice and an F(2) cross between FVB/N (H-2(q)) and BALB.K (H2(k)) mice, two strains susceptible to mouse cytomegalovirus (MCMV). Only mice expressing H2(k) in conjunction with Cmv3(MA/My) or Cmv3(FVB) were resistant to MCMV infection. Subsequently, an F(3) cross was carried out between transgenic FVB/H2-D(k) and MHC-I deficient mice in which only the progeny expressing Cmv3(FVB) and a single H2-D(k) class-I molecule completely controlled MCMV viral loads. This phenotype was shown to be NK cell–dependent and associated with subsequent NK cell proliferation. Finally, we demonstrated that a number of H2(q) alleles influence the expression level of H2(q) molecules, but not intrinsic functional properties of NK cells; viral loads, however, were quantitatively proportional to the number of H2(q) alleles. Our results support a model in which H-2(q) molecules convey Ly49-dependent inhibitory signals that interfere with the action of H2-D(k) on NK cell activation against MCMV infection. Thus, the integration of activating and inhibitory signals emanating from various MHC-I/NK cell receptor interactions regulates NK cell–mediated control of viral load.
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spelling pubmed-30808552011-04-29 NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals Fodil-Cornu, Nassima Loredo-Osti, J. Concepción Vidal, Silvia M. PLoS Genet Research Article The cytomegalovirus resistance locus Cmv3 has been linked to an epistatic interaction between two loci: a Natural Killer (NK) cell receptor gene and the major histocompatibility complex class I (MHC-I) locus. To demonstrate the interaction between Cmv3 and H2(k), we generated double congenic mice between MA/My and BALB.K mice and an F(2) cross between FVB/N (H-2(q)) and BALB.K (H2(k)) mice, two strains susceptible to mouse cytomegalovirus (MCMV). Only mice expressing H2(k) in conjunction with Cmv3(MA/My) or Cmv3(FVB) were resistant to MCMV infection. Subsequently, an F(3) cross was carried out between transgenic FVB/H2-D(k) and MHC-I deficient mice in which only the progeny expressing Cmv3(FVB) and a single H2-D(k) class-I molecule completely controlled MCMV viral loads. This phenotype was shown to be NK cell–dependent and associated with subsequent NK cell proliferation. Finally, we demonstrated that a number of H2(q) alleles influence the expression level of H2(q) molecules, but not intrinsic functional properties of NK cells; viral loads, however, were quantitatively proportional to the number of H2(q) alleles. Our results support a model in which H-2(q) molecules convey Ly49-dependent inhibitory signals that interfere with the action of H2-D(k) on NK cell activation against MCMV infection. Thus, the integration of activating and inhibitory signals emanating from various MHC-I/NK cell receptor interactions regulates NK cell–mediated control of viral load. Public Library of Science 2011-04-21 /pmc/articles/PMC3080855/ /pubmed/21533075 http://dx.doi.org/10.1371/journal.pgen.1001368 Text en Fodil-Cornu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fodil-Cornu, Nassima
Loredo-Osti, J. Concepción
Vidal, Silvia M.
NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title_full NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title_fullStr NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title_full_unstemmed NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title_short NK Cell Receptor/H2-D(k)–Dependent Host Resistance to Viral Infection Is Quantitatively Modulated by H2 (q) Inhibitory Signals
title_sort nk cell receptor/h2-d(k)–dependent host resistance to viral infection is quantitatively modulated by h2 (q) inhibitory signals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3080855/
https://www.ncbi.nlm.nih.gov/pubmed/21533075
http://dx.doi.org/10.1371/journal.pgen.1001368
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