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根据 GARP,调节性 T 细胞的世界。

The Tregs' world according to GARP.

机构信息

San Raffaele Telethon Institute for Gene Therapy, Milano, Italy.

出版信息

Eur J Immunol. 2009 Dec;39(12):3296-300. doi: 10.1002/eji.200940117.

Abstract

Naturally occurring CD4+CD25(high) regulatory T cells (nTreg) are essential for maintaining tolerance. FOXP3 has been established as a molecular marker of nTreg; however, FOXP3 cannot be used as a reliable marker for bona fide human nTreg since effector T cells also up-regulate FOXP3 expression upon activation. Despite the important function of nTreg, the underlying molecular mechanisms of nTreg-mediated suppression are far from defined. Previous studies have demonstrated that the TGF-beta latency-associated peptide (LAP) is expressed on the surface of nTreg, and that immunosuppression can be mediated by membrane TGF-beta; however, it remains unknown how LAP is bound to nTreg and what is the functional significance of its selective expression on activated nTreg. The nTreg's world may now change according to GARP, an orphan toll-like receptor composed of leucine-rich repeats. In this issue of the European Journal of Immunology, a study provides further demonstration that GARP is selectively expressed only in activated human nTreg and nTreg cell clones but not in activated effector T cells, confirming GARP as a bona fide nTreg marker. In addition, GARP binds directly to LAP; yet, GARP over-expression is insufficient to induce modification of latent TGF-beta into active TGF-beta further clarifying its role in nTreg-mediated suppression.

摘要

天然存在的 CD4+CD25(high)调节性 T 细胞 (nTreg) 对于维持耐受至关重要。FOXP3 已被确立为 nTreg 的分子标志物;然而,FOXP3 不能作为真正的人类 nTreg 的可靠标志物,因为效应 T 细胞在激活时也会上调 FOXP3 的表达。尽管 nTreg 具有重要功能,但 nTreg 介导的抑制的潜在分子机制远未确定。先前的研究表明,TGF-β潜伏相关肽 (LAP) 表达在 nTreg 的表面,膜 TGF-β 可以介导免疫抑制;然而,目前尚不清楚 LAP 如何与 nTreg 结合,以及其在激活的 nTreg 上选择性表达的功能意义。根据由富含亮氨酸重复序列组成的孤儿 toll 样受体 GARP,nTreg 的世界可能会发生变化。在本期《欧洲免疫学杂志》中,一项研究进一步证明,GARP 仅选择性地表达在激活的人类 nTreg 和 nTreg 细胞克隆中,而不在激活的效应 T 细胞中,从而证实 GARP 是真正的 nTreg 标志物。此外,GARP 直接与 LAP 结合;然而,GARP 的过度表达不足以诱导潜伏 TGF-β转化为活性 TGF-β,进一步阐明了其在 nTreg 介导的抑制中的作用。

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