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蛋白酪氨酸磷酸酶非受体型22(Ptpn22)和CD2变异与非肥胖糖尿病小鼠的蛋白表达改变及1型糖尿病易感性相关。

Ptpn22 and Cd2 Variations Are Associated with Altered Protein Expression and Susceptibility to Type 1 Diabetes in Nonobese Diabetic Mice.

作者信息

Fraser Heather I, Howlett Sarah, Clark Jan, Rainbow Daniel B, Stanford Stephanie M, Wu Dennis J, Hsieh Yi-Wen, Maine Christian J, Christensen Mikkel, Kuchroo Vijay, Sherman Linda A, Podolin Patricia L, Todd John A, Steward Charles A, Peterson Laurence B, Bottini Nunzio, Wicker Linda S

机构信息

Juvenile Diabetes Research Foundation/Wellcome Trust Diabetes and Inflammation Laboratory, Department of Medical Genetics, Cambridge Institute for Medical Research, University of Cambridge, Cambridge CB2 0XY, United Kingdom;

Division of Cell Biology, La Jolla Institute for Allergy and Immunology, La Jolla, CA 92037; La Jolla Institute for Allergy and Immunology, Type 1 Diabetes Research Center, La Jolla, CA 92037;

出版信息

J Immunol. 2015 Nov 15;195(10):4841-52. doi: 10.4049/jimmunol.1402654. Epub 2015 Oct 5.

Abstract

By congenic strain mapping using autoimmune NOD.C57BL/6J congenic mice, we demonstrated previously that the type 1 diabetes (T1D) protection associated with the insulin-dependent diabetes (Idd)10 locus on chromosome 3, originally identified by linkage analysis, was in fact due to three closely linked Idd loci: Idd10, Idd18.1, and Idd18.3. In this study, we define two additional Idd loci--Idd18.2 and Idd18.4--within the boundaries of this cluster of disease-associated genes. Idd18.2 is 1.31 Mb and contains 18 genes, including Ptpn22, which encodes a phosphatase that negatively regulates T and B cell signaling. The human ortholog of Ptpn22, PTPN22, is associated with numerous autoimmune diseases, including T1D. We, therefore, assessed Ptpn22 as a candidate for Idd18.2; resequencing of the NOD Ptpn22 allele revealed 183 single nucleotide polymorphisms with the C57BL/6J (B6) allele--6 exonic and 177 intronic. Functional studies showed higher expression of full-length Ptpn22 RNA and protein, and decreased TCR signaling in congenic strains with B6-derived Idd18.2 susceptibility alleles. The 953-kb Idd18.4 locus contains eight genes, including the candidate Cd2. The CD2 pathway is associated with the human autoimmune disease, multiple sclerosis, and mice with NOD-derived susceptibility alleles at Idd18.4 have lower CD2 expression on B cells. Furthermore, we observed that susceptibility alleles at Idd18.2 can mask the protection provided by Idd10/Cd101 or Idd18.1/Vav3 and Idd18.3. In summary, we describe two new T1D loci, Idd18.2 and Idd18.4, candidate genes within each region, and demonstrate the complex nature of genetic interactions underlying the development of T1D in the NOD mouse model.

摘要

通过使用自身免疫性NOD.C57BL/6J同源近交系小鼠进行同源近交系定位,我们先前证明,最初通过连锁分析确定的位于3号染色体上与1型糖尿病(T1D)保护相关的胰岛素依赖型糖尿病(Idd)10位点,实际上是由于三个紧密连锁的Idd位点:Idd10、Idd18.1和Idd18.3。在本研究中,我们在这一与疾病相关的基因簇范围内定义了另外两个Idd位点——Idd18.2和Idd18.4。Idd18.2为1.31兆碱基对,包含18个基因,其中包括Ptpn22,它编码一种对T和B细胞信号传导起负调控作用的磷酸酶。Ptpn22的人类同源基因PTPN22与包括T1D在内的多种自身免疫性疾病相关。因此,我们将Ptpn22评估为Idd18.2的候选基因;对NOD Ptpn22等位基因进行重测序发现,与C57BL/6J(B6)等位基因相比有183个单核苷酸多态性——6个在外显子中,177个在内含子中。功能研究表明,在携带B6来源的Idd18.2易感等位基因的同源近交系中,全长Ptpn22 RNA和蛋白质表达更高,TCR信号传导降低。953千碱基对的Idd18.4位点包含8个基因,其中包括候选基因Cd2。CD2途径与人类自身免疫性疾病多发性硬化症相关,在Idd18.4携带NOD来源易感等位基因的小鼠中,B细胞上的CD2表达较低。此外,我们观察到Idd18.2处的易感等位基因可以掩盖Idd10/Cd101或Idd18.1/Vav3以及Idd18.3所提供的保护作用。总之,我们描述了两个新的T1D位点Idd18.2和Idd18.4,以及每个区域内的候选基因,并证明了NOD小鼠模型中T1D发生背后遗传相互作用的复杂性。

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