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Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge

Humoral immunity consists of pre-existing antibodies expressed by long-lived plasma cells and rapidly reactive memory B cells (MBC). Recent studies of MBC development and function after protein immunization have uncovered significant MBC heterogeneity. To clarify functional roles for distinct MBC su...

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Autores principales: Krishnamurty, Akshay T., Thouvenel, Christopher D., Portugal, Silvia, Keitany, Gladys J., Kim, Karen S., Holder, Anthony, Crompton, Peter D., Rawlings, David J., Pepper, Marion
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5118370/
https://www.ncbi.nlm.nih.gov/pubmed/27473412
http://dx.doi.org/10.1016/j.immuni.2016.06.014
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author Krishnamurty, Akshay T.
Thouvenel, Christopher D.
Portugal, Silvia
Keitany, Gladys J.
Kim, Karen S.
Holder, Anthony
Crompton, Peter D.
Rawlings, David J.
Pepper, Marion
author_facet Krishnamurty, Akshay T.
Thouvenel, Christopher D.
Portugal, Silvia
Keitany, Gladys J.
Kim, Karen S.
Holder, Anthony
Crompton, Peter D.
Rawlings, David J.
Pepper, Marion
author_sort Krishnamurty, Akshay T.
collection PubMed
description Humoral immunity consists of pre-existing antibodies expressed by long-lived plasma cells and rapidly reactive memory B cells (MBC). Recent studies of MBC development and function after protein immunization have uncovered significant MBC heterogeneity. To clarify functional roles for distinct MBC subsets during malaria infection, we generated tetramers that identify Plasmodium-specific MBCs in both humans and mice. Long-lived murine Plasmodium-specific MBCs consisted of three populations: somatically hypermutated immunoglobulin M(+) (IgM(+)) and IgG(+) MBC subsets and an unmutated IgD(+) MBC population. Rechallenge experiments revealed that high affinity, somatically hypermutated Plasmodium-specific IgM(+) MBCs proliferated and gave rise to antibody-secreting cells that dominated the early secondary response to parasite rechallenge. IgM(+) MBCs also gave rise to T cell-dependent IgM(+) and IgG(+)B220(+)CD138(+) plasmablasts or T cell-independent B220(−)CD138(+) IgM(+) plasma cells. Thus, even in competition with IgG(+) MBCs, IgM(+) MBCs are rapid, plastic, early responders to a secondary Plasmodium rechallenge and should be targeted by vaccine strategies.
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spelling pubmed-51183702017-01-26 Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge Krishnamurty, Akshay T. Thouvenel, Christopher D. Portugal, Silvia Keitany, Gladys J. Kim, Karen S. Holder, Anthony Crompton, Peter D. Rawlings, David J. Pepper, Marion Immunity Article Humoral immunity consists of pre-existing antibodies expressed by long-lived plasma cells and rapidly reactive memory B cells (MBC). Recent studies of MBC development and function after protein immunization have uncovered significant MBC heterogeneity. To clarify functional roles for distinct MBC subsets during malaria infection, we generated tetramers that identify Plasmodium-specific MBCs in both humans and mice. Long-lived murine Plasmodium-specific MBCs consisted of three populations: somatically hypermutated immunoglobulin M(+) (IgM(+)) and IgG(+) MBC subsets and an unmutated IgD(+) MBC population. Rechallenge experiments revealed that high affinity, somatically hypermutated Plasmodium-specific IgM(+) MBCs proliferated and gave rise to antibody-secreting cells that dominated the early secondary response to parasite rechallenge. IgM(+) MBCs also gave rise to T cell-dependent IgM(+) and IgG(+)B220(+)CD138(+) plasmablasts or T cell-independent B220(−)CD138(+) IgM(+) plasma cells. Thus, even in competition with IgG(+) MBCs, IgM(+) MBCs are rapid, plastic, early responders to a secondary Plasmodium rechallenge and should be targeted by vaccine strategies. Cell Press 2016-08-16 /pmc/articles/PMC5118370/ /pubmed/27473412 http://dx.doi.org/10.1016/j.immuni.2016.06.014 Text en © 2016 The Francis Crick Institute. Published by Elsevier Inc. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Krishnamurty, Akshay T.
Thouvenel, Christopher D.
Portugal, Silvia
Keitany, Gladys J.
Kim, Karen S.
Holder, Anthony
Crompton, Peter D.
Rawlings, David J.
Pepper, Marion
Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title_full Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title_fullStr Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title_full_unstemmed Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title_short Somatically Hypermutated Plasmodium-Specific IgM(+) Memory B Cells Are Rapid, Plastic, Early Responders upon Malaria Rechallenge
title_sort somatically hypermutated plasmodium-specific igm(+) memory b cells are rapid, plastic, early responders upon malaria rechallenge
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5118370/
https://www.ncbi.nlm.nih.gov/pubmed/27473412
http://dx.doi.org/10.1016/j.immuni.2016.06.014
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