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HEB 缺陷型 T 细胞前体丧失 T 细胞潜能,并采用替代分化途径。

HEB-deficient T-cell precursors lose T-cell potential and adopt an alternative pathway of differentiation.

机构信息

Sunnybrook Research Institute and Department of Immunology, University of Toronto, 2075 Bayview Ave., Toronto, Ontario, Canada.

出版信息

Mol Cell Biol. 2011 Mar;31(5):971-82. doi: 10.1128/MCB.01034-10. Epub 2010 Dec 28.

Abstract

Early thymocytes possess multilineage potential, which is progressively restricted as cells transit through the double-negative stages of T-cell development. DN1 cells retain the ability to become natural killer cells, dendritic cells, B cells, and myeloid cells as well as T cells, but these options are lost by the DN3 stage. The Notch1 signaling pathway is indispensable for initiation of the T-cell lineage and inhibitory for the B-cell lineage, but the regulatory mechanisms by which the T-cell fate is locked in are largely undefined. Previously, we discovered that the E-protein transcription factor HEBAlt promoted T-cell specification. Here, we report that HEB(-/-) T-cell precursors have compromised Notch1 function and lose T-cell potential. Moreover, reconstituting HEB(-/-) precursors with Notch1 activity enforced fidelity to the T-cell fate. However, instead of becoming B cells, HEB(-/-) DN3 cells adopted a DN1-like phenotype and could be induced to differentiate into thymic NK cells. HEB(-/-) DN1-like cells retained GATA3 and Id2 expression but had lower levels of the Bcl11b gene, a Notch target gene. Therefore, our studies have revealed a new set of interactions between HEB, Notch1, and GATA3 that regulate the T-cell fate choice in developing thymocytes.

摘要

早期胸腺细胞具有多能性,随着细胞通过 T 细胞发育的双阴性阶段,其多能性逐渐受到限制。DN1 细胞仍然有能力成为自然杀伤细胞、树突状细胞、B 细胞和髓样细胞以及 T 细胞,但这些选择在 DN3 阶段丢失。Notch1 信号通路对于 T 细胞谱系的起始是必不可少的,并且对 B 细胞谱系具有抑制作用,但是将 T 细胞命运锁定的调节机制在很大程度上尚未确定。先前,我们发现 E 蛋白转录因子 HEBAlt 促进了 T 细胞的特化。在这里,我们报告说 HEB(-/-)T 细胞前体的 Notch1 功能受损,丧失了 T 细胞潜能。此外,用 Notch1 活性重建 HEB(-/-)前体可强制维持 T 细胞命运的保真度。然而,HEB(-/-)DN3 细胞并没有成为 B 细胞,而是采用了 DN1 样表型,并可诱导分化为胸腺 NK 细胞。HEB(-/-)DN1 样细胞保留了 GATA3 和 Id2 的表达,但 Notch 靶基因 Bcl11b 的水平较低。因此,我们的研究揭示了一组新的 HEB、Notch1 和 GATA3 之间的相互作用,这些相互作用调节发育中的胸腺细胞中的 T 细胞命运选择。

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