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Plasticity and lineage commitment of individual Th1 cells are determined by stable T-bet expression quantities

bioRxiv, ISSN: 2692-8205
2022
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    Citations
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    Social Media
Metric Options:   Counts1 Year3 Year

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  • Citations
    1
    • Citation Indexes
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      • CrossRef
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  • Mentions
    1
    • News Mentions
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      • 1

Most Recent News

Plasticity and lineage commitment of individual Th1 cells are determined by stable T-bet expression quantities (Updated December 12, 2022)

2022 DEC 22 (NewsRx) -- By a News Reporter-Staff News Editor at Health & Medicine Daily -- According to news reporting based on a preprint

Article Description

T helper 1 (Th1) cell identity is defined by the expression of the lineage-defining transcription factor T-bet. Here, we examine the influence of T-bet expression heterogeneity on subset plasticity by leveraging cell sorting of distinct in vivo-differentiated Th1 cells based on their quantitative expression of T-bet and interferon-γ. Heterogeneous T-bet expression states were regulated by virus-induced type-I interferons and were stably maintained even after secondary viral infection. Exposed to Th2-polarizing conditions, the sorted subpopulations exhibited graded levels of plasticity: T-bet quantities were inversely correlated with the ability to express the Th2 lineage-specifying transcription factor GATA-3 and Th2 cytokines. Reprogramed Th1 cells acquired graded, but stable mixed Th1+2 phenotypes with a hybrid epigenetic landscape. Continuous presence of T-bet in differentiated Th1 cells was essential to ensure Th1 cell stability. Thus, innate cytokine signals regulate Th1 cell plasticity via an individual cell-intrinsic rheostat to enable T cell subset adaptation to subsequent challenges.

Bibliographic Details

Ahmed N. Hegazy; Caroline Peine; Dominik Niesen; Isabel Panse; Tobias M. Brunner; Michael Peine; Anja Fröhlich; Roman M. Marek; Max Löhning; Yevhen Vainshtein; Christoph Kommer; Qin Zhang; Naveed Ishaque; Thomas Höfer; Jinfang Zhu

Cold Spring Harbor Laboratory

Biochemistry, Genetics and Molecular Biology; Agricultural and Biological Sciences; Immunology and Microbiology; Neuroscience; Pharmacology, Toxicology and Pharmaceutics

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