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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The mouse Idd2 locus is linked to the proportion of immunoregulatory double-negative T cells, a trait associated with autoimmune diabetes resistance
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The mouse Idd2 locus is linked to the proportion of immunoregulatory double-negative T cells, a trait associated with autoimmune diabetes resistance

机译:小鼠IDD2基因座与免疫调节双阴性T细胞的比例相关,一种与自身免疫性糖尿病抗性相关的性状

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摘要

Autoimmune diseases result from a break in immune tolerance. Various mechanisms of peripheral tolerance can protect against autoimmunity, including immunoregulatory CD4-CD8-double-negative (DN) T cells. Indeed, we have previously shown that diabetes-prone mouse strains exhibit a low proportion of DN T cells relative to that of diabetes-resistant mice, and that a single autologous transfer of DN T cells can impede autoimmune diabetes development, at least in the 3A9 TCR transgenic setting. In this study, we aim to understand the genetic basis for the difference in DN T cell proportion between diabetes-resistant and diabetes-prone mice. We thus perform an unbiased linkage analysis in 3A9 TCR F2 (NOD.H2κ× B10.BR) mice and reveal that a locus on chromosome 9, which coincides with Idd2, is linked to the proportion of DN T cells in the lymph nodes.We generate two NOD.H2κ.B10-Chr9 congenic mouse strains and validate the role of this genetic interval in defining the proportion of DN T cells. Moreover, we find that the increased proportion of DN T cells in lymphoid organs is associated with a decrease in both diabetes incidence and serum IgG Ab levels. Together, the data suggest that Idd2 is linked to DN T cell proportion and that a physiological increase in DN T cell number may be sufficient to confer resistance to autoimmune diabetes. Altogether, these findings could help identify new candidate genes for the development of therapeutic avenues aimed at modulating DN T cell number for the prevention of autoimmune diseases.
机译:自身免疫疾病因免疫耐受性的休息而导致。各种外周耐受机制可以防止自身免疫,包括免疫调节CD4-CD8-双阴性(DN)T细胞。实际上,我们先前已经表明,糖尿病 - 易患小鼠菌株相对于糖尿病小鼠的低比例的DN T细胞,并且在3A9中至少在3A9中妨碍自身免疫糖尿病发育的单一自体转移TCR转基因设定。在这项研究中,我们的目的是理解糖尿病和糖尿病患者之间DN T细胞比例差异的遗传基础。因此,我们在3A9 TCR F2(NOD.H2K×B10.BR)小鼠中进行无偏见的联系分析,并揭示染色体9上的轨迹与IDD2重合,与淋巴结中的DN T细胞的比例相关联.WE产生两个NOD.H2κ.B10-CH19 CONCIC小鼠菌株并验证该遗传间隔在定义DN T细胞的比例方面的作用。此外,我们发现淋巴器官中的DN T细胞比例增加与糖尿病发病率和血清IgG AB水平的降低相关。在一起,数据表明IDD2与DN T细胞比例相关,并且DN T细胞数的生理增加可能足以赋予自身免疫糖尿病抗性。总之,这些发现可以帮助识别用于开发治疗途径的新候选基因,旨在调节预防自身免疫疾病的DN T细胞数。

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