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Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development

Btk and Vav proteins are all components of the signalosome that builds upon B cell receptor (BCR) activation. However, the role of Vav proteins within the signalosome is quite complex and not yet fully understood. Until now, studies of these have focused predominantly on a deficiency of Vav proteins...

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Autores principales: Betzler, Annika C., Kieser, Sebastian, Fiedler, Katja, Laban, Simon, Theodoraki, Marie-Nicole, Schuler, Patrick J., Wirth, Thomas, Tedford, Kerry, Fischer, Klaus-Dieter, Hoffmann, Thomas K., Brunner, Cornelia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8904969/
https://www.ncbi.nlm.nih.gov/pubmed/35281114
http://dx.doi.org/10.3389/fcell.2022.654181
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author Betzler, Annika C.
Kieser, Sebastian
Fiedler, Katja
Laban, Simon
Theodoraki, Marie-Nicole
Schuler, Patrick J.
Wirth, Thomas
Tedford, Kerry
Fischer, Klaus-Dieter
Hoffmann, Thomas K.
Brunner, Cornelia
author_facet Betzler, Annika C.
Kieser, Sebastian
Fiedler, Katja
Laban, Simon
Theodoraki, Marie-Nicole
Schuler, Patrick J.
Wirth, Thomas
Tedford, Kerry
Fischer, Klaus-Dieter
Hoffmann, Thomas K.
Brunner, Cornelia
author_sort Betzler, Annika C.
collection PubMed
description Btk and Vav proteins are all components of the signalosome that builds upon B cell receptor (BCR) activation. However, the role of Vav proteins within the signalosome is quite complex and not yet fully understood. Until now, studies of these have focused predominantly on a deficiency of Vav proteins alone or in combination with other Vav protein family members. Since a physical association of Btk with Vav was shown previously, we asked whether these molecules lie in the same or independent signaling pathways. By analyzing Vav1 and Vav3 single knock-out mice and generating double-knock-out animals deficient for either Vav1 or Vav3 and Btk, we observed, in line with previous publications, no severe B cell developmental defects when either Vav1 or Vav3 alone are not expressed. However, a simultaneous deficiency of Btk together with either Vav1 or Vav3 leads to a severe reduction of splenic B cells, which exhibit an immature phenotype. B cell developmental defects of Btk/Vav1-double deficient mice in the periphery were more severe than those observed in Btk-single-deficient animals. Additionally, morphological changes in splenic microarchitecture were observed in double- but also in single-knock-out mutants. These observations were accompanied by reduced BCR-induced Ca(2+) mobilization, proliferation, germinal center formation and immunoglobulin secretion. Although deletion of Btk alone impaired Ca(2+) mobilization upon BCR activation, the defect was even more severe when Vav1 or Vav3 were also mutated, indicating that Btk and the Vav proteins act in separate pathways that converge on Ca2+ signaling. In vitro ASC differentiation suggests that both B and T cells contribute to the observed phenotype of a Btk/Vav-double deficiency. Our results show that Vav proteins and Btk are both components of the BCR-activated signalosome but control separate signaling pathways important for B cell development.
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spelling pubmed-89049692022-03-10 Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development Betzler, Annika C. Kieser, Sebastian Fiedler, Katja Laban, Simon Theodoraki, Marie-Nicole Schuler, Patrick J. Wirth, Thomas Tedford, Kerry Fischer, Klaus-Dieter Hoffmann, Thomas K. Brunner, Cornelia Front Cell Dev Biol Cell and Developmental Biology Btk and Vav proteins are all components of the signalosome that builds upon B cell receptor (BCR) activation. However, the role of Vav proteins within the signalosome is quite complex and not yet fully understood. Until now, studies of these have focused predominantly on a deficiency of Vav proteins alone or in combination with other Vav protein family members. Since a physical association of Btk with Vav was shown previously, we asked whether these molecules lie in the same or independent signaling pathways. By analyzing Vav1 and Vav3 single knock-out mice and generating double-knock-out animals deficient for either Vav1 or Vav3 and Btk, we observed, in line with previous publications, no severe B cell developmental defects when either Vav1 or Vav3 alone are not expressed. However, a simultaneous deficiency of Btk together with either Vav1 or Vav3 leads to a severe reduction of splenic B cells, which exhibit an immature phenotype. B cell developmental defects of Btk/Vav1-double deficient mice in the periphery were more severe than those observed in Btk-single-deficient animals. Additionally, morphological changes in splenic microarchitecture were observed in double- but also in single-knock-out mutants. These observations were accompanied by reduced BCR-induced Ca(2+) mobilization, proliferation, germinal center formation and immunoglobulin secretion. Although deletion of Btk alone impaired Ca(2+) mobilization upon BCR activation, the defect was even more severe when Vav1 or Vav3 were also mutated, indicating that Btk and the Vav proteins act in separate pathways that converge on Ca2+ signaling. In vitro ASC differentiation suggests that both B and T cells contribute to the observed phenotype of a Btk/Vav-double deficiency. Our results show that Vav proteins and Btk are both components of the BCR-activated signalosome but control separate signaling pathways important for B cell development. Frontiers Media S.A. 2022-02-23 /pmc/articles/PMC8904969/ /pubmed/35281114 http://dx.doi.org/10.3389/fcell.2022.654181 Text en Copyright © 2022 Betzler, Kieser, Fiedler, Laban, Theodoraki, Schuler, Wirth, Tedford, Fischer, Hoffmann and Brunner. 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 Cell and Developmental Biology
Betzler, Annika C.
Kieser, Sebastian
Fiedler, Katja
Laban, Simon
Theodoraki, Marie-Nicole
Schuler, Patrick J.
Wirth, Thomas
Tedford, Kerry
Fischer, Klaus-Dieter
Hoffmann, Thomas K.
Brunner, Cornelia
Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title_full Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title_fullStr Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title_full_unstemmed Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title_short Differential Requirement of Vav Proteins for Btk-dependent and –Independent Signaling During B Cell Development
title_sort differential requirement of vav proteins for btk-dependent and –independent signaling during b cell development
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8904969/
https://www.ncbi.nlm.nih.gov/pubmed/35281114
http://dx.doi.org/10.3389/fcell.2022.654181
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