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scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model

It is well documented that the neonatal thymus-derived (neonatal-TD) regulatory T cells (Treg) are essential to prevent lethal autoimmune diseases and allergies, and neonatal and adult thymus possesses distinct output potentials for naïve T cells, including Treg. However, the molecular features and...

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Autores principales: Han, Yuheng, Ouyang, Xinxing, Chen, Yao, Lai, Shujing, Sun, Hongxiang, Wu, Ningbo, Ruan, Chun, Lu, Limin, Su, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10117164/
https://www.ncbi.nlm.nih.gov/pubmed/36542462
http://dx.doi.org/10.1093/jmcb/mjac072
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author Han, Yuheng
Ouyang, Xinxing
Chen, Yao
Lai, Shujing
Sun, Hongxiang
Wu, Ningbo
Ruan, Chun
Lu, Limin
Su, Bing
author_facet Han, Yuheng
Ouyang, Xinxing
Chen, Yao
Lai, Shujing
Sun, Hongxiang
Wu, Ningbo
Ruan, Chun
Lu, Limin
Su, Bing
author_sort Han, Yuheng
collection PubMed
description It is well documented that the neonatal thymus-derived (neonatal-TD) regulatory T cells (Treg) are essential to prevent lethal autoimmune diseases and allergies, and neonatal and adult thymus possesses distinct output potentials for naïve T cells, including Treg. However, the molecular features and detailed functional differences between neonatal-TD and adult thymus-derived (adult-TD) T cells in terms of their ability to maintain immune homeostasis during long-term environmental influences are still largely unknown, partially due to the lack of appropriate animal models to precisely trace these cells at specific time points. In this study, neonatal-TD and adult-TD CD4(+) T cells from the spleen and Peyer's patches were traced for 9 weeks by a T cell origin-time tracing mouse model and analysed by single-cell RNA sequencing. More Treg but fewer naïve T cells were found in neonatal-TD CD4(+) T cells from both tissues than those from adult-TD counterparts. Interestingly, the neonatal-TD Treg in both the spleen and Peyer's patches exhibited augmented expression of Foxp3, Gata3, Ctla4, Icos, Il2ra, Tgfb1, and Nrp1, as well as enriched Gene Ontology terms like T cell activation and tolerance induction, indicating an enhanced immunosuppressive function. These results were further confirmed by flow cytometry analysis and in vitro immune suppression assays. Flow cytometry also revealed a significantly higher proportion of neonatal-TD Treg in total Treg than that of adult-TD counterparts, suggesting the longer lifespan of neonatal-TD Treg. To investigate the intrinsic features of neonatal-TD and adult-TD CD4(+) T cells, a shortened tracing time was performed. Surprisingly, the neonatal-TD and adult-TD CD4(+) T cells had similar proportions of Treg and did not exhibit significant differences in Foxp3, Gata3, Ctla4, Icos, Il2ra, and Tgfb1 expression levels after tracing for 12 days. On the other hand, neonatal-TD Treg present an increased Nrp1 expression level compared with adult-TD counterparts, indicating the enhanced stability. Together, our work reveals that the neonatal-TD Treg are more immunosuppressive, which is likely shaped primarily by environmental factors.
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spelling pubmed-101171642023-04-21 scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model Han, Yuheng Ouyang, Xinxing Chen, Yao Lai, Shujing Sun, Hongxiang Wu, Ningbo Ruan, Chun Lu, Limin Su, Bing J Mol Cell Biol Article It is well documented that the neonatal thymus-derived (neonatal-TD) regulatory T cells (Treg) are essential to prevent lethal autoimmune diseases and allergies, and neonatal and adult thymus possesses distinct output potentials for naïve T cells, including Treg. However, the molecular features and detailed functional differences between neonatal-TD and adult thymus-derived (adult-TD) T cells in terms of their ability to maintain immune homeostasis during long-term environmental influences are still largely unknown, partially due to the lack of appropriate animal models to precisely trace these cells at specific time points. In this study, neonatal-TD and adult-TD CD4(+) T cells from the spleen and Peyer's patches were traced for 9 weeks by a T cell origin-time tracing mouse model and analysed by single-cell RNA sequencing. More Treg but fewer naïve T cells were found in neonatal-TD CD4(+) T cells from both tissues than those from adult-TD counterparts. Interestingly, the neonatal-TD Treg in both the spleen and Peyer's patches exhibited augmented expression of Foxp3, Gata3, Ctla4, Icos, Il2ra, Tgfb1, and Nrp1, as well as enriched Gene Ontology terms like T cell activation and tolerance induction, indicating an enhanced immunosuppressive function. These results were further confirmed by flow cytometry analysis and in vitro immune suppression assays. Flow cytometry also revealed a significantly higher proportion of neonatal-TD Treg in total Treg than that of adult-TD counterparts, suggesting the longer lifespan of neonatal-TD Treg. To investigate the intrinsic features of neonatal-TD and adult-TD CD4(+) T cells, a shortened tracing time was performed. Surprisingly, the neonatal-TD and adult-TD CD4(+) T cells had similar proportions of Treg and did not exhibit significant differences in Foxp3, Gata3, Ctla4, Icos, Il2ra, and Tgfb1 expression levels after tracing for 12 days. On the other hand, neonatal-TD Treg present an increased Nrp1 expression level compared with adult-TD counterparts, indicating the enhanced stability. Together, our work reveals that the neonatal-TD Treg are more immunosuppressive, which is likely shaped primarily by environmental factors. Oxford University Press 2022-12-20 /pmc/articles/PMC10117164/ /pubmed/36542462 http://dx.doi.org/10.1093/jmcb/mjac072 Text en © The Author(s) (2022). Published by Oxford University Press on behalf of Journal of Molecular Cell Biology, CEMCS, CAS. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Han, Yuheng
Ouyang, Xinxing
Chen, Yao
Lai, Shujing
Sun, Hongxiang
Wu, Ningbo
Ruan, Chun
Lu, Limin
Su, Bing
scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title_full scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title_fullStr scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title_full_unstemmed scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title_short scRNA-seq profiling of neonatal and adult thymus-derived CD4(+) T cells by a T cell origin-time tracing model
title_sort scrna-seq profiling of neonatal and adult thymus-derived cd4(+) t cells by a t cell origin-time tracing model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10117164/
https://www.ncbi.nlm.nih.gov/pubmed/36542462
http://dx.doi.org/10.1093/jmcb/mjac072
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