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Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition

Long-lived human plasma cells (PCs) play central roles in immunity and autoimmunity and are enriched among the subpopulation of CD19(neg) human PCs. However, whether human CD19(neg) PCs are necessarily aged cells that have gradually lost CD19 expression is not known. Assessing peripheral blood sampl...

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Autores principales: Arumugakani, Gururaj, Stephenson, Sophie J., Newton, Darren J., Rawstron, Andy, Emery, Paul, Doody, Gina M., McGonagle, Dennis, Tooze, Reuben M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5458329/
https://www.ncbi.nlm.nih.gov/pubmed/28490574
http://dx.doi.org/10.4049/jimmunol.1501761
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author Arumugakani, Gururaj
Stephenson, Sophie J.
Newton, Darren J.
Rawstron, Andy
Emery, Paul
Doody, Gina M.
McGonagle, Dennis
Tooze, Reuben M.
author_facet Arumugakani, Gururaj
Stephenson, Sophie J.
Newton, Darren J.
Rawstron, Andy
Emery, Paul
Doody, Gina M.
McGonagle, Dennis
Tooze, Reuben M.
author_sort Arumugakani, Gururaj
collection PubMed
description Long-lived human plasma cells (PCs) play central roles in immunity and autoimmunity and are enriched among the subpopulation of CD19(neg) human PCs. However, whether human CD19(neg) PCs are necessarily aged cells that have gradually lost CD19 expression is not known. Assessing peripheral blood samples at steady-state and during the acute response to influenza vaccination in healthy donors, we identify the presence of phenotypic CD19(neg) plasmablasts, the proliferative precursor state to mature PCs, and demonstrate by ELISPOT that these are Ab-secreting cells (ASCs). During the acute response to influenza vaccination, CD19(pos), CD19(low), and CD19(neg) ASCs secrete vaccine-specific Abs and show linked IGHV repertoires. To address precursor/product relationships, we use in vitro models that mimic T-dependent and T-independent differentiation, finding that the CD19(neg) state can be established at the plasmablast to PC transition, that CD19(neg) PCs increase as a percentage of surviving PCs in vitro, and that CD19(neg) and CD19(pos) PCs can be maintained independently. These data provide proof-of-principle for the view that newly generated ASCs can acquire a mature PC phenotype that is accompanied by loss of CD19 expression at an early stage of differentiation and that aging is not an obligate requirement for a CD19(neg) state to be established.
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spelling pubmed-54583292017-06-07 Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition Arumugakani, Gururaj Stephenson, Sophie J. Newton, Darren J. Rawstron, Andy Emery, Paul Doody, Gina M. McGonagle, Dennis Tooze, Reuben M. J Immunol Clinical and Human Immunology Long-lived human plasma cells (PCs) play central roles in immunity and autoimmunity and are enriched among the subpopulation of CD19(neg) human PCs. However, whether human CD19(neg) PCs are necessarily aged cells that have gradually lost CD19 expression is not known. Assessing peripheral blood samples at steady-state and during the acute response to influenza vaccination in healthy donors, we identify the presence of phenotypic CD19(neg) plasmablasts, the proliferative precursor state to mature PCs, and demonstrate by ELISPOT that these are Ab-secreting cells (ASCs). During the acute response to influenza vaccination, CD19(pos), CD19(low), and CD19(neg) ASCs secrete vaccine-specific Abs and show linked IGHV repertoires. To address precursor/product relationships, we use in vitro models that mimic T-dependent and T-independent differentiation, finding that the CD19(neg) state can be established at the plasmablast to PC transition, that CD19(neg) PCs increase as a percentage of surviving PCs in vitro, and that CD19(neg) and CD19(pos) PCs can be maintained independently. These data provide proof-of-principle for the view that newly generated ASCs can acquire a mature PC phenotype that is accompanied by loss of CD19 expression at an early stage of differentiation and that aging is not an obligate requirement for a CD19(neg) state to be established. AAI 2017-06-15 2017-05-10 /pmc/articles/PMC5458329/ /pubmed/28490574 http://dx.doi.org/10.4049/jimmunol.1501761 Text en Copyright © 2017 The Authors https://creativecommons.org/licenses/by/4.0 This article is distributed under the terms of the CC BY 4.0 Unported license.
spellingShingle Clinical and Human Immunology
Arumugakani, Gururaj
Stephenson, Sophie J.
Newton, Darren J.
Rawstron, Andy
Emery, Paul
Doody, Gina M.
McGonagle, Dennis
Tooze, Reuben M.
Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title_full Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title_fullStr Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title_full_unstemmed Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title_short Early Emergence of CD19-Negative Human Antibody-Secreting Cells at the Plasmablast to Plasma Cell Transition
title_sort early emergence of cd19-negative human antibody-secreting cells at the plasmablast to plasma cell transition
topic Clinical and Human Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5458329/
https://www.ncbi.nlm.nih.gov/pubmed/28490574
http://dx.doi.org/10.4049/jimmunol.1501761
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