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Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population

Integrin regulation by Rap1 is indispensable for lymphocyte recirculation. In mice having B-cell-specific Rap1a/b double knockouts (DKO), the number of B cells in lymph nodes decreased to approximately 4% of that of control mice, and B cells were present in the spleen and blood. Upon the immunizatio...

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Autores principales: Ishihara, Sayaka, Sato, Tsuyoshi, Sugioka, Risa, Miwa, Ryota, Saito, Haruka, Sato, Ryota, Fukuyama, Hidehiro, Nakajima, Akihiko, Sawai, Satoshi, Kotani, Ai, Katagiri, Koko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8203927/
https://www.ncbi.nlm.nih.gov/pubmed/34140948
http://dx.doi.org/10.3389/fimmu.2021.624419
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author Ishihara, Sayaka
Sato, Tsuyoshi
Sugioka, Risa
Miwa, Ryota
Saito, Haruka
Sato, Ryota
Fukuyama, Hidehiro
Nakajima, Akihiko
Sawai, Satoshi
Kotani, Ai
Katagiri, Koko
author_facet Ishihara, Sayaka
Sato, Tsuyoshi
Sugioka, Risa
Miwa, Ryota
Saito, Haruka
Sato, Ryota
Fukuyama, Hidehiro
Nakajima, Akihiko
Sawai, Satoshi
Kotani, Ai
Katagiri, Koko
author_sort Ishihara, Sayaka
collection PubMed
description Integrin regulation by Rap1 is indispensable for lymphocyte recirculation. In mice having B-cell-specific Rap1a/b double knockouts (DKO), the number of B cells in lymph nodes decreased to approximately 4% of that of control mice, and B cells were present in the spleen and blood. Upon the immunization with NP-CGG, DKO mice demonstrated the defective GC formation in the spleen, and the reduced NP-specific antibody production. In vitro, Rap1 deficiency impaired the movement of activated B cells along the gradients of chemoattractants known to be critical for their localization in the follicles. Furthermore, B-1a cells were almost completely absent in the peritoneal cavity, spleen and blood of adult DKO mice, and the number of B-cell progenitor/precursor (B-p) were reduced in neonatal and fetal livers. However, DKO B-ps normally proliferated, and differentiated into IgM(+) cells in the presence of IL-7. CXCL12-dependent migration of B-ps on the VCAM-1 was severely impaired by Rap1 deficiency. Immunostaining study of fetal livers revealed defects in the co-localization of DKO B-ps and IL-7-producing stromal cells. This study proposes that the profound effects of Rap1-deficiency on humoral responses and B-1a cell generation may be due to or in part caused by impairments of the chemoattractant-dependent positioning and the contact with stromal cells.
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spelling pubmed-82039272021-06-16 Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population Ishihara, Sayaka Sato, Tsuyoshi Sugioka, Risa Miwa, Ryota Saito, Haruka Sato, Ryota Fukuyama, Hidehiro Nakajima, Akihiko Sawai, Satoshi Kotani, Ai Katagiri, Koko Front Immunol Immunology Integrin regulation by Rap1 is indispensable for lymphocyte recirculation. In mice having B-cell-specific Rap1a/b double knockouts (DKO), the number of B cells in lymph nodes decreased to approximately 4% of that of control mice, and B cells were present in the spleen and blood. Upon the immunization with NP-CGG, DKO mice demonstrated the defective GC formation in the spleen, and the reduced NP-specific antibody production. In vitro, Rap1 deficiency impaired the movement of activated B cells along the gradients of chemoattractants known to be critical for their localization in the follicles. Furthermore, B-1a cells were almost completely absent in the peritoneal cavity, spleen and blood of adult DKO mice, and the number of B-cell progenitor/precursor (B-p) were reduced in neonatal and fetal livers. However, DKO B-ps normally proliferated, and differentiated into IgM(+) cells in the presence of IL-7. CXCL12-dependent migration of B-ps on the VCAM-1 was severely impaired by Rap1 deficiency. Immunostaining study of fetal livers revealed defects in the co-localization of DKO B-ps and IL-7-producing stromal cells. This study proposes that the profound effects of Rap1-deficiency on humoral responses and B-1a cell generation may be due to or in part caused by impairments of the chemoattractant-dependent positioning and the contact with stromal cells. Frontiers Media S.A. 2021-06-01 /pmc/articles/PMC8203927/ /pubmed/34140948 http://dx.doi.org/10.3389/fimmu.2021.624419 Text en Copyright © 2021 Ishihara, Sato, Sugioka, Miwa, Saito, Sato, Fukuyama, Nakajima, Sawai, Kotani and Katagiri https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Ishihara, Sayaka
Sato, Tsuyoshi
Sugioka, Risa
Miwa, Ryota
Saito, Haruka
Sato, Ryota
Fukuyama, Hidehiro
Nakajima, Akihiko
Sawai, Satoshi
Kotani, Ai
Katagiri, Koko
Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title_full Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title_fullStr Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title_full_unstemmed Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title_short Rap1 Is Essential for B-Cell Locomotion, Germinal Center Formation and Normal B-1a Cell Population
title_sort rap1 is essential for b-cell locomotion, germinal center formation and normal b-1a cell population
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8203927/
https://www.ncbi.nlm.nih.gov/pubmed/34140948
http://dx.doi.org/10.3389/fimmu.2021.624419
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