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Developmental plasticity allows outside-in immune responses by resident memory T cells

Central memory T (T(CM)) cells patrol lymph nodes and perform conventional memory responses upon re-stimulation: proliferation, migration, and differentiation into diverse T cell subsets while also self-renewing. Resident memory T (T(RM)) cells are parked within single organs, share properties with...

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Autores principales: Fonseca, Raissa, Beura, Lalit K, Quarnstrom, Clare F, Ghoneim, Hazem E, Fan, Yiping, Zebley, Caitlin C, Scott, Milcah C, Fares-Frederickson, Nancy J, Wijeyesinghe, Sathi, Thompson, Emily A, da Silva, Henrique Borges, Vezys, Vaiva, Youngblood, Benjamin, Masopust, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7096285/
https://www.ncbi.nlm.nih.gov/pubmed/32066954
http://dx.doi.org/10.1038/s41590-020-0607-7
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author Fonseca, Raissa
Beura, Lalit K
Quarnstrom, Clare F
Ghoneim, Hazem E
Fan, Yiping
Zebley, Caitlin C
Scott, Milcah C
Fares-Frederickson, Nancy J
Wijeyesinghe, Sathi
Thompson, Emily A
da Silva, Henrique Borges
Vezys, Vaiva
Youngblood, Benjamin
Masopust, David
author_facet Fonseca, Raissa
Beura, Lalit K
Quarnstrom, Clare F
Ghoneim, Hazem E
Fan, Yiping
Zebley, Caitlin C
Scott, Milcah C
Fares-Frederickson, Nancy J
Wijeyesinghe, Sathi
Thompson, Emily A
da Silva, Henrique Borges
Vezys, Vaiva
Youngblood, Benjamin
Masopust, David
author_sort Fonseca, Raissa
collection PubMed
description Central memory T (T(CM)) cells patrol lymph nodes and perform conventional memory responses upon re-stimulation: proliferation, migration, and differentiation into diverse T cell subsets while also self-renewing. Resident memory T (T(RM)) cells are parked within single organs, share properties with terminal effectors, and contribute to rapid host protection. We observed that reactivated T(RM) cells rejoined the circulating pool. Epigenetic analyses revealed that T(RM) cells align closely with conventional memory T cell populations, bearing little resemblance to recently activated effectors. Fully differentiated T(RM) cells isolated from small intestine epithelium exhibited the potential to differentiate into T(CM), T(EM), and T(RM) cells upon recall. Ex-T(RM) cells, former intestinal T(RM) that rejoined the circulating pool, heritably maintained a predilection for homing back to their tissue of origin upon subsequent reactivation and a heightened capacity to re-differentiate into T(RM) cells. Thus, T(RM) cells can rejoin the circulation but are advantaged to re-form local T(RM) when called upon.
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spelling pubmed-70962852020-08-17 Developmental plasticity allows outside-in immune responses by resident memory T cells Fonseca, Raissa Beura, Lalit K Quarnstrom, Clare F Ghoneim, Hazem E Fan, Yiping Zebley, Caitlin C Scott, Milcah C Fares-Frederickson, Nancy J Wijeyesinghe, Sathi Thompson, Emily A da Silva, Henrique Borges Vezys, Vaiva Youngblood, Benjamin Masopust, David Nat Immunol Article Central memory T (T(CM)) cells patrol lymph nodes and perform conventional memory responses upon re-stimulation: proliferation, migration, and differentiation into diverse T cell subsets while also self-renewing. Resident memory T (T(RM)) cells are parked within single organs, share properties with terminal effectors, and contribute to rapid host protection. We observed that reactivated T(RM) cells rejoined the circulating pool. Epigenetic analyses revealed that T(RM) cells align closely with conventional memory T cell populations, bearing little resemblance to recently activated effectors. Fully differentiated T(RM) cells isolated from small intestine epithelium exhibited the potential to differentiate into T(CM), T(EM), and T(RM) cells upon recall. Ex-T(RM) cells, former intestinal T(RM) that rejoined the circulating pool, heritably maintained a predilection for homing back to their tissue of origin upon subsequent reactivation and a heightened capacity to re-differentiate into T(RM) cells. Thus, T(RM) cells can rejoin the circulation but are advantaged to re-form local T(RM) when called upon. 2020-02-17 2020-04 /pmc/articles/PMC7096285/ /pubmed/32066954 http://dx.doi.org/10.1038/s41590-020-0607-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Fonseca, Raissa
Beura, Lalit K
Quarnstrom, Clare F
Ghoneim, Hazem E
Fan, Yiping
Zebley, Caitlin C
Scott, Milcah C
Fares-Frederickson, Nancy J
Wijeyesinghe, Sathi
Thompson, Emily A
da Silva, Henrique Borges
Vezys, Vaiva
Youngblood, Benjamin
Masopust, David
Developmental plasticity allows outside-in immune responses by resident memory T cells
title Developmental plasticity allows outside-in immune responses by resident memory T cells
title_full Developmental plasticity allows outside-in immune responses by resident memory T cells
title_fullStr Developmental plasticity allows outside-in immune responses by resident memory T cells
title_full_unstemmed Developmental plasticity allows outside-in immune responses by resident memory T cells
title_short Developmental plasticity allows outside-in immune responses by resident memory T cells
title_sort developmental plasticity allows outside-in immune responses by resident memory t cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7096285/
https://www.ncbi.nlm.nih.gov/pubmed/32066954
http://dx.doi.org/10.1038/s41590-020-0607-7
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