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Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment

Unlike conventional αβT cells, invariant natural killer T (iNKT) cells complete their terminal differentiation to functional iNKT1/2/17 cells in the thymus. However, underlying molecular programs that guide iNKT subset differentiation remain unclear. Here, we profiled the transcriptomes of over 17,0...

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Autores principales: Wang, Jie, Adrianto, Indra, Subedi, Kalpana, Liu, Tingting, Wu, Xiaojun, Yi, Qijun, Loveless, Ian, Yin, Congcong, Datta, Indrani, Sant’Angelo, Derek B., Kronenberg, Mitchell, Zhou, Li, Mi, Qing-Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Nature Singapore 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10279728/
https://www.ncbi.nlm.nih.gov/pubmed/37336875
http://dx.doi.org/10.1038/s41421-023-00547-x
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author Wang, Jie
Adrianto, Indra
Subedi, Kalpana
Liu, Tingting
Wu, Xiaojun
Yi, Qijun
Loveless, Ian
Yin, Congcong
Datta, Indrani
Sant’Angelo, Derek B.
Kronenberg, Mitchell
Zhou, Li
Mi, Qing-Sheng
author_facet Wang, Jie
Adrianto, Indra
Subedi, Kalpana
Liu, Tingting
Wu, Xiaojun
Yi, Qijun
Loveless, Ian
Yin, Congcong
Datta, Indrani
Sant’Angelo, Derek B.
Kronenberg, Mitchell
Zhou, Li
Mi, Qing-Sheng
author_sort Wang, Jie
collection PubMed
description Unlike conventional αβT cells, invariant natural killer T (iNKT) cells complete their terminal differentiation to functional iNKT1/2/17 cells in the thymus. However, underlying molecular programs that guide iNKT subset differentiation remain unclear. Here, we profiled the transcriptomes of over 17,000 iNKT cells and the chromatin accessibility states of over 39,000 iNKT cells across four thymic iNKT developmental stages using single-cell RNA sequencing (scRNA-seq) and single-cell assay for transposase-accessible chromatin sequencing (scATAC-seq) to define their developmental trajectories. Our study discovered novel features for iNKT precursors and different iNKT subsets and indicated that iNKT2 and iNKT17 lineage commitment may occur as early as stage 0 (ST0) by two distinct programs, while iNKT1 commitments may occur post ST0. Both iNKT1 and iNKT2 cells exhibit extensive phenotypic and functional heterogeneity, while iNKT17 cells are relatively homogenous. Furthermore, we identified that a novel transcription factor, Cbfβ, was highly expressed in iNKT progenitor commitment checkpoint, which showed a similar expression trajectory with other known transcription factors for iNKT cells development, Zbtb16 and Egr2, and could direct iNKT cells fate and drive their effector phenotype differentiation. Conditional deletion of Cbfβ blocked early iNKT cell development and led to severe impairment of iNKT1/2/17 cell differentiation. Overall, our findings uncovered distinct iNKT developmental programs as well as their cellular heterogeneity, and identified a novel transcription factor Cbfβ as a key regulator for early iNKT cell commitment.
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spelling pubmed-102797282023-06-21 Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment Wang, Jie Adrianto, Indra Subedi, Kalpana Liu, Tingting Wu, Xiaojun Yi, Qijun Loveless, Ian Yin, Congcong Datta, Indrani Sant’Angelo, Derek B. Kronenberg, Mitchell Zhou, Li Mi, Qing-Sheng Cell Discov Article Unlike conventional αβT cells, invariant natural killer T (iNKT) cells complete their terminal differentiation to functional iNKT1/2/17 cells in the thymus. However, underlying molecular programs that guide iNKT subset differentiation remain unclear. Here, we profiled the transcriptomes of over 17,000 iNKT cells and the chromatin accessibility states of over 39,000 iNKT cells across four thymic iNKT developmental stages using single-cell RNA sequencing (scRNA-seq) and single-cell assay for transposase-accessible chromatin sequencing (scATAC-seq) to define their developmental trajectories. Our study discovered novel features for iNKT precursors and different iNKT subsets and indicated that iNKT2 and iNKT17 lineage commitment may occur as early as stage 0 (ST0) by two distinct programs, while iNKT1 commitments may occur post ST0. Both iNKT1 and iNKT2 cells exhibit extensive phenotypic and functional heterogeneity, while iNKT17 cells are relatively homogenous. Furthermore, we identified that a novel transcription factor, Cbfβ, was highly expressed in iNKT progenitor commitment checkpoint, which showed a similar expression trajectory with other known transcription factors for iNKT cells development, Zbtb16 and Egr2, and could direct iNKT cells fate and drive their effector phenotype differentiation. Conditional deletion of Cbfβ blocked early iNKT cell development and led to severe impairment of iNKT1/2/17 cell differentiation. Overall, our findings uncovered distinct iNKT developmental programs as well as their cellular heterogeneity, and identified a novel transcription factor Cbfβ as a key regulator for early iNKT cell commitment. Springer Nature Singapore 2023-06-20 /pmc/articles/PMC10279728/ /pubmed/37336875 http://dx.doi.org/10.1038/s41421-023-00547-x Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Wang, Jie
Adrianto, Indra
Subedi, Kalpana
Liu, Tingting
Wu, Xiaojun
Yi, Qijun
Loveless, Ian
Yin, Congcong
Datta, Indrani
Sant’Angelo, Derek B.
Kronenberg, Mitchell
Zhou, Li
Mi, Qing-Sheng
Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title_full Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title_fullStr Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title_full_unstemmed Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title_short Integrative scATAC-seq and scRNA-seq analyses map thymic iNKT cell development and identify Cbfβ for its commitment
title_sort integrative scatac-seq and scrna-seq analyses map thymic inkt cell development and identify cbfβ for its commitment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10279728/
https://www.ncbi.nlm.nih.gov/pubmed/37336875
http://dx.doi.org/10.1038/s41421-023-00547-x
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