Mays Lauren E, Chen Youhai H
Department of Pathology and Laboratory Medicine, School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Cell Res. 2007 Nov;17(11):904-18. doi: 10.1038/cr.2007.84.
Central tolerance in the thymus is the primary mechanism for deleting autoreactive T cells. Despite this, escape of self-reactive T lymphocytes into the periphery reveals the threat of autoimmunity. To compensate for its imperfection, the thymus also produces a naturally occurring subset of Foxp3+ CD4+ CD25+ regulatory T cells with suppressive function, capable of controlling autoreactive cells. Foxp3 (forkhead box P3), the lineage-specific marker for this subset of cells, is crucial to their thymic development and peripheral function, and yet the transcriptional program driven by Foxp3 was until now largely undefined. Emerging evidence has provided insight into its role: from the ability of Foxp3 to cooperate with other transcription factors such as NFAT, to the genome-wide characterization of target genes directly bound and regulated by Foxp3. Here we discuss the discovery of naturally occurring regulatory T cells - their phenotype, development, maintenance, and function - largely as they are defined by the lineage-specific marker, Foxp3.
胸腺中的中枢耐受是清除自身反应性T细胞的主要机制。尽管如此,自身反应性T淋巴细胞逃逸至外周会引发自身免疫的威胁。为弥补其不完善之处,胸腺还产生了具有抑制功能的自然发生的Foxp3 + CD4 + CD25 +调节性T细胞亚群,能够控制自身反应性细胞。Foxp3(叉头框P3)是该细胞亚群的谱系特异性标志物,对其胸腺发育和外周功能至关重要,然而迄今为止,由Foxp3驱动的转录程序在很大程度上尚未明确。新出现的证据为其作用提供了深入了解:从Foxp3与其他转录因子(如NFAT)合作的能力,到对由Foxp3直接结合和调控的靶基因进行全基因组特征分析。在这里,我们主要根据谱系特异性标志物Foxp3所定义的内容,讨论自然发生的调节性T细胞的发现——它们的表型、发育、维持和功能。
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