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The Ig heavy chain protein but not its message controls early B cell development

Development of progenitor B cells (ProB cells) into precursor B cells (PreB cells) is dictated by immunoglobulin heavy chain checkpoint (IgHCC), where the IgHC encoded by a productively rearranged Igh allele assembles into a PreB cell receptor complex (PreBCR) to generate signals to initiate this tr...

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Autores principales: Aslam, Muhammad Assad, Alemdehy, Mir Farshid, Hao, Bingtao, Krijger, Peter H. L., Pritchard, Colin E. J., de Rink, Iris, Muhaimin, Fitriari Izzatunnisa, Nurzijah, Ika, van Baalen, Martijn, Kerkhoven, Ron M., van den Berk, Paul C. M., Skok, Jane A., Jacobs, Heinz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7733823/
https://www.ncbi.nlm.nih.gov/pubmed/33229554
http://dx.doi.org/10.1073/pnas.2004810117
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author Aslam, Muhammad Assad
Alemdehy, Mir Farshid
Hao, Bingtao
Krijger, Peter H. L.
Pritchard, Colin E. J.
de Rink, Iris
Muhaimin, Fitriari Izzatunnisa
Nurzijah, Ika
van Baalen, Martijn
Kerkhoven, Ron M.
van den Berk, Paul C. M.
Skok, Jane A.
Jacobs, Heinz
author_facet Aslam, Muhammad Assad
Alemdehy, Mir Farshid
Hao, Bingtao
Krijger, Peter H. L.
Pritchard, Colin E. J.
de Rink, Iris
Muhaimin, Fitriari Izzatunnisa
Nurzijah, Ika
van Baalen, Martijn
Kerkhoven, Ron M.
van den Berk, Paul C. M.
Skok, Jane A.
Jacobs, Heinz
author_sort Aslam, Muhammad Assad
collection PubMed
description Development of progenitor B cells (ProB cells) into precursor B cells (PreB cells) is dictated by immunoglobulin heavy chain checkpoint (IgHCC), where the IgHC encoded by a productively rearranged Igh allele assembles into a PreB cell receptor complex (PreBCR) to generate signals to initiate this transition and suppressing antigen receptor gene recombination, ensuring that only one productive Igh allele is expressed, a phenomenon known as Igh allelic exclusion. In contrast to a productively rearranged Igh allele, the Igh messenger RNA (mRNA) (IgHR) from a nonproductively rearranged Igh allele is degraded by nonsense-mediated decay (NMD). This fact prohibited firm conclusions regarding the contribution of stable IgHR to the molecular and developmental changes associated with the IgHCC. This point was addressed by generating the Igh(Ter5H∆TM) mouse model from Igh(Ter5H) mice having a premature termination codon at position +5 in leader exon of Igh(Ter5H) allele. This prohibited NMD, and the lack of a transmembrane region (∆TM) prevented the formation of any signaling-competent PreBCR complexes that may arise as a result of read-through translation across premature Ter5 stop codon. A highly sensitive sandwich Western blot revealed read-through translation of Igh(Ter5H) message, indicating that previous conclusions regarding a role of IgHR in establishing allelic exclusion requires further exploration. As determined by RNA sequencing (RNA-Seq), this low amount of IgHC sufficed to initiate PreB cell markers normally associated with PreBCR signaling. In contrast, the Igh(Ter5H∆TM) knock-in allele, which generated stable IgHR but no detectable IgHC, failed to induce PreB development. Our data indicate that the IgHCC is controlled at the level of IgHC and not IgHR expression.
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spelling pubmed-77338232020-12-21 The Ig heavy chain protein but not its message controls early B cell development Aslam, Muhammad Assad Alemdehy, Mir Farshid Hao, Bingtao Krijger, Peter H. L. Pritchard, Colin E. J. de Rink, Iris Muhaimin, Fitriari Izzatunnisa Nurzijah, Ika van Baalen, Martijn Kerkhoven, Ron M. van den Berk, Paul C. M. Skok, Jane A. Jacobs, Heinz Proc Natl Acad Sci U S A Biological Sciences Development of progenitor B cells (ProB cells) into precursor B cells (PreB cells) is dictated by immunoglobulin heavy chain checkpoint (IgHCC), where the IgHC encoded by a productively rearranged Igh allele assembles into a PreB cell receptor complex (PreBCR) to generate signals to initiate this transition and suppressing antigen receptor gene recombination, ensuring that only one productive Igh allele is expressed, a phenomenon known as Igh allelic exclusion. In contrast to a productively rearranged Igh allele, the Igh messenger RNA (mRNA) (IgHR) from a nonproductively rearranged Igh allele is degraded by nonsense-mediated decay (NMD). This fact prohibited firm conclusions regarding the contribution of stable IgHR to the molecular and developmental changes associated with the IgHCC. This point was addressed by generating the Igh(Ter5H∆TM) mouse model from Igh(Ter5H) mice having a premature termination codon at position +5 in leader exon of Igh(Ter5H) allele. This prohibited NMD, and the lack of a transmembrane region (∆TM) prevented the formation of any signaling-competent PreBCR complexes that may arise as a result of read-through translation across premature Ter5 stop codon. A highly sensitive sandwich Western blot revealed read-through translation of Igh(Ter5H) message, indicating that previous conclusions regarding a role of IgHR in establishing allelic exclusion requires further exploration. As determined by RNA sequencing (RNA-Seq), this low amount of IgHC sufficed to initiate PreB cell markers normally associated with PreBCR signaling. In contrast, the Igh(Ter5H∆TM) knock-in allele, which generated stable IgHR but no detectable IgHC, failed to induce PreB development. Our data indicate that the IgHCC is controlled at the level of IgHC and not IgHR expression. National Academy of Sciences 2020-12-08 2020-11-23 /pmc/articles/PMC7733823/ /pubmed/33229554 http://dx.doi.org/10.1073/pnas.2004810117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Aslam, Muhammad Assad
Alemdehy, Mir Farshid
Hao, Bingtao
Krijger, Peter H. L.
Pritchard, Colin E. J.
de Rink, Iris
Muhaimin, Fitriari Izzatunnisa
Nurzijah, Ika
van Baalen, Martijn
Kerkhoven, Ron M.
van den Berk, Paul C. M.
Skok, Jane A.
Jacobs, Heinz
The Ig heavy chain protein but not its message controls early B cell development
title The Ig heavy chain protein but not its message controls early B cell development
title_full The Ig heavy chain protein but not its message controls early B cell development
title_fullStr The Ig heavy chain protein but not its message controls early B cell development
title_full_unstemmed The Ig heavy chain protein but not its message controls early B cell development
title_short The Ig heavy chain protein but not its message controls early B cell development
title_sort ig heavy chain protein but not its message controls early b cell development
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7733823/
https://www.ncbi.nlm.nih.gov/pubmed/33229554
http://dx.doi.org/10.1073/pnas.2004810117
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