γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice.
Size and composition of γδ T cell populations change dramatically with tissue location, during development, and in disease. Given the functional differentiation of γδ T cell subsets, such shifts might alter the impact of γδ T cells on the immune system. To test this concept, and to determine if γδ T...
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doaj-6e77a4c1673248d6813c0c1a7c07637b2021-03-04T11:22:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01146e021882710.1371/journal.pone.0218827γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice.Swati Popat PhalkeYafei HuangKira RubtsovaAndrew GetahunDeming SunRichard L ReinhardtRebecca L O'BrienWilli K BornSize and composition of γδ T cell populations change dramatically with tissue location, during development, and in disease. Given the functional differentiation of γδ T cell subsets, such shifts might alter the impact of γδ T cells on the immune system. To test this concept, and to determine if γδ T cells can affect other immune cells prior to an immune response, we examined non-immunized mice derived from strains with different genetically induced deficiencies in γδ T cells, for secondary changes in their immune system. We previously saw extensive changes in pre-immune antibodies and B cell populations. Here, we report effects on αβ T cells. Similarly to the B cells, αβ T cells evidently experience the influence of γδ T cells at late stages of their pre-immune differentiation, as single-positive heat stable antigen-low thymocytes. Changes in these and in mature αβ T cells were most prominent with memory-phenotype cells, including both CD8+ and CD4+ populations. As previously observed with B cells, most of the effects on αβ T cells were dependent on IL-4. Unexpectedly, IL-4 seemed to be produced mainly by αβ T cells in the non-immunized mice, albeit strongly regulated by γδ T cells. Similarly to our findings with B cells, changes of αβ T cells were less pronounced in mice lacking all γδ T cells than in mice lacking only some, suggesting that the composition of the γδ T cell population determines the nature of the γδ-influence on the other pre-immune lymphocytes.https://doi.org/10.1371/journal.pone.0218827 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Swati Popat Phalke Yafei Huang Kira Rubtsova Andrew Getahun Deming Sun Richard L Reinhardt Rebecca L O'Brien Willi K Born |
spellingShingle |
Swati Popat Phalke Yafei Huang Kira Rubtsova Andrew Getahun Deming Sun Richard L Reinhardt Rebecca L O'Brien Willi K Born γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. PLoS ONE |
author_facet |
Swati Popat Phalke Yafei Huang Kira Rubtsova Andrew Getahun Deming Sun Richard L Reinhardt Rebecca L O'Brien Willi K Born |
author_sort |
Swati Popat Phalke |
title |
γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. |
title_short |
γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. |
title_full |
γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. |
title_fullStr |
γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. |
title_full_unstemmed |
γδ T cells shape memory-phenotype αβ T cell populations in non-immunized mice. |
title_sort |
γδ t cells shape memory-phenotype αβ t cell populations in non-immunized mice. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2019-01-01 |
description |
Size and composition of γδ T cell populations change dramatically with tissue location, during development, and in disease. Given the functional differentiation of γδ T cell subsets, such shifts might alter the impact of γδ T cells on the immune system. To test this concept, and to determine if γδ T cells can affect other immune cells prior to an immune response, we examined non-immunized mice derived from strains with different genetically induced deficiencies in γδ T cells, for secondary changes in their immune system. We previously saw extensive changes in pre-immune antibodies and B cell populations. Here, we report effects on αβ T cells. Similarly to the B cells, αβ T cells evidently experience the influence of γδ T cells at late stages of their pre-immune differentiation, as single-positive heat stable antigen-low thymocytes. Changes in these and in mature αβ T cells were most prominent with memory-phenotype cells, including both CD8+ and CD4+ populations. As previously observed with B cells, most of the effects on αβ T cells were dependent on IL-4. Unexpectedly, IL-4 seemed to be produced mainly by αβ T cells in the non-immunized mice, albeit strongly regulated by γδ T cells. Similarly to our findings with B cells, changes of αβ T cells were less pronounced in mice lacking all γδ T cells than in mice lacking only some, suggesting that the composition of the γδ T cell population determines the nature of the γδ-influence on the other pre-immune lymphocytes. |
url |
https://doi.org/10.1371/journal.pone.0218827 |
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