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Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System

Alymphoplasia (aly) mice, which carry a point mutation in the nuclear factor κB–inducing kinase (NIK) gene, are characterized by the systemic absence of lymph nodes and Peyer's patches, disorganized splenic and thymic architectures, and immunodeficiency. Another unique feature of aly/aly mice i...

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Autores principales: Fagarasan, Sidonia, Shinkura, Reiko, Kamata, Tadashi, Nogaki, Fumiaki, Ikuta, Koichi, Tashiro, Kei, Honjo, Tasuku
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213441/
https://www.ncbi.nlm.nih.gov/pubmed/10790423
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author Fagarasan, Sidonia
Shinkura, Reiko
Kamata, Tadashi
Nogaki, Fumiaki
Ikuta, Koichi
Tashiro, Kei
Honjo, Tasuku
author_facet Fagarasan, Sidonia
Shinkura, Reiko
Kamata, Tadashi
Nogaki, Fumiaki
Ikuta, Koichi
Tashiro, Kei
Honjo, Tasuku
author_sort Fagarasan, Sidonia
collection PubMed
description Alymphoplasia (aly) mice, which carry a point mutation in the nuclear factor κB–inducing kinase (NIK) gene, are characterized by the systemic absence of lymph nodes and Peyer's patches, disorganized splenic and thymic architectures, and immunodeficiency. Another unique feature of aly/aly mice is that their peritoneal cavity contains more B1 cells than normal and aly/+ mice. Transfer experiments of peritoneal lymphocytes from aly/aly mice into recombination activating gene (RAG)-2(−/−) mice revealed that B and T cells fail to migrate to other lymphoid tissues, particularly to the gut-associated lymphatic tissue system. In vivo homing defects of aly/aly peritoneal cells correlated with reduction of their in vitro chemotactic responses to secondary lymphoid tissue chemokine (SLC) and B lymphocyte chemoattractant (BLC). The migration defect of aly/aly lymphocytes was not due to a lack of expression of chemokines and their receptors, but rather to impaired signal transduction downstream of the receptors for SLC, indicating that NIK is involved in the chemokine signaling pathway known to couple only with G proteins. The results showed that the reduced serum levels of immunoglobulins (Igs) and the absence of class switch to IgA in aly/aly mice are due, at least in part, to a migration defect of lymphocytes to the proper microenvironment where B cells proliferate and differentiate into Ig-producing cells.
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spelling pubmed-22134412008-04-16 Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System Fagarasan, Sidonia Shinkura, Reiko Kamata, Tadashi Nogaki, Fumiaki Ikuta, Koichi Tashiro, Kei Honjo, Tasuku J Exp Med Original Article Alymphoplasia (aly) mice, which carry a point mutation in the nuclear factor κB–inducing kinase (NIK) gene, are characterized by the systemic absence of lymph nodes and Peyer's patches, disorganized splenic and thymic architectures, and immunodeficiency. Another unique feature of aly/aly mice is that their peritoneal cavity contains more B1 cells than normal and aly/+ mice. Transfer experiments of peritoneal lymphocytes from aly/aly mice into recombination activating gene (RAG)-2(−/−) mice revealed that B and T cells fail to migrate to other lymphoid tissues, particularly to the gut-associated lymphatic tissue system. In vivo homing defects of aly/aly peritoneal cells correlated with reduction of their in vitro chemotactic responses to secondary lymphoid tissue chemokine (SLC) and B lymphocyte chemoattractant (BLC). The migration defect of aly/aly lymphocytes was not due to a lack of expression of chemokines and their receptors, but rather to impaired signal transduction downstream of the receptors for SLC, indicating that NIK is involved in the chemokine signaling pathway known to couple only with G proteins. The results showed that the reduced serum levels of immunoglobulins (Igs) and the absence of class switch to IgA in aly/aly mice are due, at least in part, to a migration defect of lymphocytes to the proper microenvironment where B cells proliferate and differentiate into Ig-producing cells. The Rockefeller University Press 2000-05-01 /pmc/articles/PMC2213441/ /pubmed/10790423 Text en © 2000 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Fagarasan, Sidonia
Shinkura, Reiko
Kamata, Tadashi
Nogaki, Fumiaki
Ikuta, Koichi
Tashiro, Kei
Honjo, Tasuku
Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title_full Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title_fullStr Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title_full_unstemmed Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title_short Alymphoplasia (aly)-Type Nuclear Factor κB–Inducing Kinase (Nik) Causes Defects in Secondary Lymphoid Tissue Chemokine Receptor Signaling and Homing of Peritoneal Cells to the Gut-Associated Lymphatic Tissue System
title_sort alymphoplasia (aly)-type nuclear factor κb–inducing kinase (nik) causes defects in secondary lymphoid tissue chemokine receptor signaling and homing of peritoneal cells to the gut-associated lymphatic tissue system
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213441/
https://www.ncbi.nlm.nih.gov/pubmed/10790423
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