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Neuropilin-1 在体内调节性 T 细胞亚群中区分天然和诱导性调节性 T 细胞。

Neuropilin-1 distinguishes natural and inducible regulatory T cells among regulatory T cell subsets in vivo.

机构信息

Diabetes Center, University of California, San Francisco, San Francisco, CA 94122, USA.

出版信息

J Exp Med. 2012 Sep 24;209(10):1713-22, S1-19. doi: 10.1084/jem.20120822. Epub 2012 Sep 10.


DOI:10.1084/jem.20120822
PMID:22966003
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3457729/
Abstract

Foxp3(+) CD4(+) T helper cells called regulatory T (T reg) cells play a key role in controlling reactivity to self-antigens and onset of autoimmunity. T reg cells either arise in thymus and are called natural T reg (nT reg) cells or are generated in the periphery through induction of Foxp3 and are called inducible T reg (iT reg) cells. The relative contributions of iT reg cells and nT reg cells in peripheral tolerance remain unclear as a result of an inability to separate these two subsets of T reg cells. Using a combination of novel TCR transgenic mice with a defined self-antigen specificity and conventional mouse models, we demonstrate that a cell surface molecule, neuropilin-1 (Nrp-1), is expressed at high levels on nT reg cells and can be used to separate nT reg versus iT reg cells in certain physiological settings. In addition, iT reg cells generated through antigen delivery or converted under homeostatic conditions lack Nrp-1 expression. Nrp-1(lo) iT reg cells show similar suppressive activity to nT reg cells in controlling ongoing autoimmune responses under homeostatic conditions. In contrast, their activity might be compromised in certain lymphopenic settings. Collectively, our data show that Nrp-1 provides an excellent marker to distinguish distinct T reg subsets and will be useful in studying the role of nT reg versus iT reg cells in different disease settings.

摘要

Foxp3(+) CD4(+) T 辅助细胞,称为调节性 T (Treg) 细胞,在控制对自身抗原的反应性和自身免疫的发生中起着关键作用。Treg 细胞要么在胸腺中产生,称为天然 Treg (nTreg) 细胞,要么在外周通过诱导 Foxp3 产生,称为诱导性 Treg (iTreg) 细胞。由于无法分离这两种 Treg 细胞亚群,iTreg 细胞和 nTreg 细胞在外周耐受中的相对贡献仍不清楚。本研究使用具有特定自身抗原特异性的新型 TCR 转基因小鼠和传统小鼠模型的组合,证明了一种细胞表面分子,神经钙黏蛋白-1 (Nrp-1),在 nTreg 细胞上高水平表达,并可用于在某些生理情况下分离 nTreg 与 iTreg 细胞。此外,通过抗原传递产生的 iTreg 细胞或在稳态条件下转化的 iTreg 细胞缺乏 Nrp-1 表达。Nrp-1(lo) iTreg 细胞在稳态条件下控制正在进行的自身免疫反应时,表现出与 nTreg 细胞相似的抑制活性。相比之下,在某些淋巴减少的情况下,其活性可能受损。总的来说,我们的数据表明,Nrp-1 提供了一个极好的标记来区分不同的 Treg 细胞亚群,将有助于研究 nTreg 与 iTreg 细胞在不同疾病状态下的作用。

相似文献

[1]
Neuropilin-1 distinguishes natural and inducible regulatory T cells among regulatory T cell subsets in vivo.

J Exp Med. 2012-9-10

[2]
Neuropilin 1 is expressed on thymus-derived natural regulatory T cells, but not mucosa-generated induced Foxp3+ T reg cells.

J Exp Med. 2012-9-10

[3]
TCR repertoire and Foxp3 expression define functionally distinct subsets of CD4+ regulatory T cells.

J Immunol. 2009-9-1

[4]
Functional waning of naturally occurring CD4+ regulatory T-cells contributes to the onset of autoimmune diabetes.

Diabetes. 2008-1

[5]
Neuropilin 1 deficiency on CD4+Foxp3+ regulatory T cells impairs mouse melanoma growth.

J Exp Med. 2012-10-8

[6]
An intersection between the self-reactive regulatory and nonregulatory T cell receptor repertoires.

Nat Immunol. 2006-4

[7]
Antigen-specific peripheral shaping of the natural regulatory T cell population.

J Exp Med. 2008-12-22

[8]
Impact of protective IL-2 allelic variants on CD4+ Foxp3+ regulatory T cell function in situ and resistance to autoimmune diabetes in NOD mice.

J Immunol. 2008-11-1

[9]
CD4+CD25+ regulatory T cells selectively diminish systemic autoreactivity in arthritic K/BxN mice.

Mol Cells. 2008-2-29

[10]
TGF-beta1 modulates Foxp3 expression and regulatory activity in distinct CD4+ T cell subsets.

J Leukoc Biol. 2007-8

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[4]
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[5]
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[6]
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[7]
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[8]
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[9]
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本文引用的文献

[1]
Following the fate of one insulin-reactive CD4 T cell: conversion into Teffs and Tregs in the periphery controls diabetes in NOD mice.

Diabetes. 2012-3-8

[2]
Plasticity of Foxp3(+) T cells reflects promiscuous Foxp3 expression in conventional T cells but not reprogramming of regulatory T cells.

Immunity. 2012-2-9

[3]
Expression of Helios in peripherally induced Foxp3+ regulatory T cells.

J Immunol. 2011-12-23

[4]
Helios expression is a marker of T cell activation and proliferation.

PLoS One. 2011-8-30

[5]
A requisite role for induced regulatory T cells in tolerance based on expanding antigen receptor diversity.

Immunity. 2011-6-30

[6]
Genomic definition of multiple ex vivo regulatory T cell subphenotypes.

Proc Natl Acad Sci U S A. 2010-3-15

[7]
Expression of Helios, an Ikaros transcription factor family member, differentiates thymic-derived from peripherally induced Foxp3+ T regulatory cells.

J Immunol. 2010-2-24

[8]
TCR-dependent differentiation of thymic Foxp3+ cells is limited to small clonal sizes.

J Exp Med. 2009-9-28

[9]
Instability of the transcription factor Foxp3 leads to the generation of pathogenic memory T cells in vivo.

Nat Immunol. 2009-9

[10]
Neuropilin-1 is not a marker of human Foxp3+ Treg.

Eur J Immunol. 2009-6

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