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转录因子 Duxbl 介导β选择失败的前 T 细胞的消除。

The transcription factor Duxbl mediates elimination of pre-T cells that fail β-selection.

机构信息

Developmental and Molecular Immunology, Department of Biomedicine, University of Basel, Basel, Switzerland

Immune Regulation, Department of Biomedicine, University of Basel, Basel, Switzerland.

出版信息

J Exp Med. 2019 Mar 4;216(3):638-655. doi: 10.1084/jem.20181444. Epub 2019 Feb 14.

Abstract

T cell development is critically dependent on successful rearrangement of antigen-receptor chains. At the β-selection checkpoint, only cells with a functional rearrangement continue in development. However, how nonselected T cells proceed in their dead-end fate is not clear. We identified low CD27 expression to mark pre-T cells that have failed to rearrange their β-chain. Expression profiling and single-cell transcriptome clustering identified a developmental trajectory through β-selection and revealed specific expression of the transcription factor Duxbl at a stage of high recombination activity before β-selection. Conditional transgenic expression of Duxbl resulted in a developmental block at the DN3-to-DN4 transition due to reduced proliferation and enhanced apoptosis, whereas RNA silencing of Duxbl led to a decrease in apoptosis. Transcriptome analysis linked Duxbl to elevated expression of the apoptosis-inducing Oas/RNaseL pathway. RNaseL deficiency or sustained Bcl2 expression led to a partial rescue of cells in Duxbl transgenic mice. These findings identify Duxbl as a regulator of β-selection by inducing apoptosis in cells with a nonfunctional rearrangement.

摘要

T 细胞的发育严重依赖于抗原受体链的成功重排。在 β 选择检查点,只有具有功能性重排的细胞才能继续发育。然而,非选择的 T 细胞如何走向它们的无出路命运尚不清楚。我们发现低 CD27 表达可以标记未能重排其β链的前 T 细胞。表达谱分析和单细胞转录组聚类鉴定了一条通过β选择的发育轨迹,并在β选择前的高重组活性阶段揭示了转录因子 Duxbl 的特异性表达。Duxbl 的条件性转基因表达导致 DN3 到 DN4 过渡的发育阻滞,原因是增殖减少和凋亡增强,而 Duxbl 的 RNA 沉默导致凋亡减少。转录组分析将 Duxbl 与凋亡诱导的 Oas/RNaseL 途径的高表达联系起来。RNaseL 缺陷或持续的 Bcl2 表达导致 Duxbl 转基因小鼠中的细胞部分恢复。这些发现表明 Duxbl 通过诱导无功能重排细胞的凋亡来调节β选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05b0/6400535/089bfe59260e/JEM_20181444_GA.jpg

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