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本文引用的文献

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The defect in T-cell regulation in NOD mice is an effect on the T-cell effectors.非肥胖型糖尿病(NOD)小鼠中T细胞调节的缺陷是对T细胞效应器的一种影响。
Proc Natl Acad Sci U S A. 2008 Dec 16;105(50):19857-62. doi: 10.1073/pnas.0810713105. Epub 2008 Dec 10.
2
Public T cell receptor beta-chains are not advantaged during positive selection.公共T细胞受体β链在阳性选择过程中不占优势。
J Immunol. 2008 Jan 15;180(2):1029-39. doi: 10.4049/jimmunol.180.2.1029.
3
Enhanced thymic selection of FoxP3+ regulatory T cells in the NOD mouse model of autoimmune diabetes.在自身免疫性糖尿病的非肥胖糖尿病(NOD)小鼠模型中,胸腺对FoxP3 +调节性T细胞的选择增强。
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Nonself-antigens are the cognate specificities of Foxp3+ regulatory T cells.非自身抗原是Foxp3 +调节性T细胞的同源特异性。
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TCR-based lineage tracing: no evidence for conversion of conventional into regulatory T cells in response to a natural self-antigen in pancreatic islets.基于TCR的谱系追踪:没有证据表明常规T细胞会因胰腺胰岛中的天然自身抗原而转化为调节性T细胞。
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Interleukin-2 gene variation impairs regulatory T cell function and causes autoimmunity.白细胞介素-2基因变异会损害调节性T细胞功能并引发自身免疫。
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Slamf1, the NKT cell control gene Nkt1.Slamf1,即自然杀伤T细胞控制基因Nkt1。
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8
TCR-alpha CDR3 loop audition regulates positive selection.TCR-α互补决定区3环筛选调节阳性选择。
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An intersection between the self-reactive regulatory and nonregulatory T cell receptor repertoires.自身反应性调节性和非调节性T细胞受体库之间的交叉。
Nat Immunol. 2006 Apr;7(4):401-10. doi: 10.1038/ni1318. Epub 2006 Mar 12.
10
Single cell analysis shows decreasing FoxP3 and TGFbeta1 coexpressing CD4+CD25+ regulatory T cells during autoimmune diabetes.单细胞分析显示,在自身免疫性糖尿病期间,共表达FoxP3和TGFβ1的CD4+CD25+调节性T细胞数量减少。
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非肥胖糖尿病小鼠选择了自然调节性T细胞的低多样性库。

Non-obese diabetic mice select a low-diversity repertoire of natural regulatory T cells.

作者信息

Ferreira Cristina, Singh Yogesh, Furmanski Anna L, Wong F Susan, Garden Oliver A, Dyson Julian

机构信息

Department of Immunology, Imperial College London, Hammersmith Hospital, London, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2009 May 19;106(20):8320-5. doi: 10.1073/pnas.0808493106. Epub 2009 Apr 9.

DOI:10.1073/pnas.0808493106
PMID:19359477
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2688872/
Abstract

Thymus-derived Foxp3(+) natural regulatory CD4 T cells (nTregs) prevent autoimmunity through control of pathogenic, autoreactive T cells and other immune effector cells. Using T cell receptor (TCR) transgenic models, diversity within this lineage has been found to be similar to that of conventional CD4 T cells. To determine whether balanced TCR diversity may be perturbed in autoimmunity, we have analyzed receptor composition in C57BL/6 and autoimmune non-obese diabetic (NOD) mice. The natural regulatory and conventional CD4 repertoires of C57BL/6 had similar diversities. Despite the apparently normal thymic development of the NOD nTreg lineage, TCR diversity within the selected repertoire was markedly restricted. Detailed analysis of TCRalpha and -beta chain composition is consistent with positive selection into the natural regulatory lineage being under stringent audition for interaction with MHC class II/self-peptide. The NOD MHC region, including the unique H2-A(g7) class II molecule, partly accounts for the reduction in diversity, but additional NOD genetic contribution(s) are required for complete repertoire compaction. Mechanistic links between MHC, autoimmunity, and nTreg diversity identified in this study are discussed.

摘要

胸腺来源的Foxp3(+)自然调节性CD4 T细胞(nTregs)通过控制致病性自身反应性T细胞和其他免疫效应细胞来预防自身免疫。利用T细胞受体(TCR)转基因模型,已发现该谱系内的多样性与传统CD4 T细胞相似。为了确定自身免疫中平衡的TCR多样性是否可能受到干扰,我们分析了C57BL/6和自身免疫性非肥胖糖尿病(NOD)小鼠的受体组成。C57BL/6的自然调节性和传统CD4库具有相似的多样性。尽管NOD nTreg谱系的胸腺发育明显正常,但所选库中的TCR多样性明显受限。对TCRα和β链组成的详细分析与正向选择进入自然调节谱系时与MHC II类/自身肽相互作用受到严格筛选一致。NOD MHC区域,包括独特的H2-A(g7) II类分子,部分解释了多样性的降低,但完整的库压缩还需要额外的NOD基因贡献。本文讨论了本研究中确定的MHC、自身免疫和nTreg多样性之间的机制联系。