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首页> 外文期刊>The journal of immunology >HLA-B*39:06 Efficiently Mediates Type 1 Diabetes in a Mouse Model Incorporating Reduced Thymic Insulin Expression
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HLA-B*39:06 Efficiently Mediates Type 1 Diabetes in a Mouse Model Incorporating Reduced Thymic Insulin Expression

机译:HLA-B * 39:06在整合了胸腺胰岛素表达降低的小鼠模型中有效介导1型糖尿病。

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Type 1 diabetes (T1D) is characterized by T cell–mediated destruction of the insulin-producing β cells of the pancreatic islets. Among the loci associated with T1D risk, those most predisposing are found in the MHC region. HLA-B*39:06 is the most predisposing class I MHC allele and is associated with an early age of onset. To establish an NOD mouse model for the study of HLA-B*39:06, we expressed it in the absence of murine class I MHC. HLA-B*39:06 was able to mediate the development of CD8 T cells, support lymphocytic infiltration of the islets, and confer T1D susceptibility. Because reduced thymic insulin expression is associated with impaired immunological tolerance to insulin and increased T1D risk in patients, we incorporated this in our model as well, finding that HLA-B*39:06–transgenic NOD mice with reduced thymic insulin expression have an earlier age of disease onset and a higher overall prevalence as compared with littermates with typical thymic insulin expression. This was despite virtually indistinguishable blood insulin levels, T cell subset percentages, and TCR Vβ family usage, confirming that reduced thymic insulin expression does not impact T cell development on a global scale. Rather, it will facilitate the thymic escape of insulin-reactive HLA-B*39:06–restricted T cells, which participate in β cell destruction. We also found that in mice expressing either HLA-B*39:06 or HLA-A*02:01 in the absence of murine class I MHC, HLA transgene identity alters TCR Vβ usage by CD8 T cells, demonstrating that some TCR Vβ families have a preference for particular class I MHC alleles.
机译:1型糖尿病(T1D)的特征是T细胞介导的胰岛产生胰岛素的β细胞破坏。在与T1D风险相关的基因座中,最易患的基因座位于MHC地区。 HLA-B * 39:06是最易患的I类MHC等位基因,与发病年龄较早有关。为了建立用于研究HLA-B * 39:06的NOD小鼠模型,我们在没有鼠类I MHC的情况下将其表达。 HLA-B * 39:06能够介导CD8 T细胞的发育,支持胰岛的淋巴细胞浸润,并赋予T1D敏感性。由于胸腺胰岛素表达降低与患者对胰岛素的免疫耐受性降低以及患者的T1D风险增加相关,因此我们也将其纳入了我们的模型,发现胸腺胰岛素表达降低的HLA-B * 39:06-转基因NOD小鼠具有更早的免疫应答与具有典型胸腺胰岛素表达的同窝仔相比,疾病发病年龄大,总体患病率更高。尽管实际上没有区别的血液胰岛素水平,T细胞亚群百分比和TCRVβ家族使用情况,这证实了胸腺胰岛素表达的降低不会在全球范围内影响T细胞的发育。而是,它将促进参与β细胞破坏的胰岛素反应性HLA-B * 39:06限制性T细胞的胸腺逃逸。我们还发现,在没有鼠类I MHC的情况下表达HLA-B * 39:06或HLA-A * 02:01的小鼠中,HLA转基因同一性会改变CD8 T细胞对TCRVβ的使用,表明某些TCRVβ家族对特定的I类MHC等位基因有偏爱。

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