Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine.
Whether γδ T cells inhibit or enhance the Foxp3 T cell response depends upon their activation status. The critical enhancing effector in the supernatant is adenosine. Activated γδ T cells express adenosine receptors at high levels, which enables them to deprive Foxp3+ T cells of adenosine, and to in...
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doaj-160b4676efa74df4a6b0b6524420edf62020-11-24T20:41:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01135e019718910.1371/journal.pone.0197189Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine.Dongchun LiangJeong-Im WooHui ShaoWilli K BornRebecca L O'BrienHenry J KaplanDeming SunWhether γδ T cells inhibit or enhance the Foxp3 T cell response depends upon their activation status. The critical enhancing effector in the supernatant is adenosine. Activated γδ T cells express adenosine receptors at high levels, which enables them to deprive Foxp3+ T cells of adenosine, and to inhibit their expansion. Meanwhile, cell-free supernatants of γδ T cell cultures enhance Foxp3 T cell expansion. Thus, inhibition and enhancement by γδ T cells of Foxp3 T cell response are a reflection of the balance between adenosine production and absorption by γδ T cells. Non-activated γδ T cells produce adenosine but bind little, and thus enhance the Foxp3 T cell response. Activated γδ T cells express high density of adenosine receptors and have a greatly increased ability to bind adenosine. Extracellular adenosine metabolism and expression of adenosine receptor A2ARs by γδ T cells played a major role in the outcome of γδ and Foxp3 T cell interactions. A better understanding of the functional conversion of γδ T cells could lead to γδ T cell-targeted immunotherapies for related diseases.http://europepmc.org/articles/PMC5957379?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dongchun Liang Jeong-Im Woo Hui Shao Willi K Born Rebecca L O'Brien Henry J Kaplan Deming Sun |
spellingShingle |
Dongchun Liang Jeong-Im Woo Hui Shao Willi K Born Rebecca L O'Brien Henry J Kaplan Deming Sun Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. PLoS ONE |
author_facet |
Dongchun Liang Jeong-Im Woo Hui Shao Willi K Born Rebecca L O'Brien Henry J Kaplan Deming Sun |
author_sort |
Dongchun Liang |
title |
Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. |
title_short |
Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. |
title_full |
Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. |
title_fullStr |
Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. |
title_full_unstemmed |
Ability of γδ T cells to modulate the Foxp3 T cell response is dependent on adenosine. |
title_sort |
ability of γδ t cells to modulate the foxp3 t cell response is dependent on adenosine. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2018-01-01 |
description |
Whether γδ T cells inhibit or enhance the Foxp3 T cell response depends upon their activation status. The critical enhancing effector in the supernatant is adenosine. Activated γδ T cells express adenosine receptors at high levels, which enables them to deprive Foxp3+ T cells of adenosine, and to inhibit their expansion. Meanwhile, cell-free supernatants of γδ T cell cultures enhance Foxp3 T cell expansion. Thus, inhibition and enhancement by γδ T cells of Foxp3 T cell response are a reflection of the balance between adenosine production and absorption by γδ T cells. Non-activated γδ T cells produce adenosine but bind little, and thus enhance the Foxp3 T cell response. Activated γδ T cells express high density of adenosine receptors and have a greatly increased ability to bind adenosine. Extracellular adenosine metabolism and expression of adenosine receptor A2ARs by γδ T cells played a major role in the outcome of γδ and Foxp3 T cell interactions. A better understanding of the functional conversion of γδ T cells could lead to γδ T cell-targeted immunotherapies for related diseases. |
url |
http://europepmc.org/articles/PMC5957379?pdf=render |
work_keys_str_mv |
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