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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Activation-induced deaminase heterozygous MRL/lpr mice are delayed in the production of high-affinity pathogenic antibodies and in the development of lupus nephritis.
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Activation-induced deaminase heterozygous MRL/lpr mice are delayed in the production of high-affinity pathogenic antibodies and in the development of lupus nephritis.

机译:激活诱导的脱氨酶杂合MRL / lpr小鼠在高亲和力致病性抗体的产生和狼疮性肾炎的发生中被延迟。

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摘要

We previously reported that activation-induced deaminase (AID) heterozygous MRL/lpr mice have substantially lower levels of serum anti-dsDNA autoantibodies than AID wild-type littermates. Given the known functions of AID, here we examined whether this decrease in pathogenic autoantibodies in the heterozygotes was the result of a defect in class switch recombination, somatic hypermutation, or both. We report significant impairment of switch recombination to most isotypes except immunoglobulin G3 (IgG3) in vitro. However, serum levels of IgG were similar to AID wild-type levels even in very young mice. Mutation accumulation in the B cells from Peyer's patches also revealed reduced somatic hypermutation in the heterozygotes. Unlike the switch defect, the hypermutation defect probably resulted in an in vivo effect because the serum IgG antibodies from the heterozygotes were of strikingly lower affinity to dsDNA than serum IgG antibodies from wild-type littermates. This suggests that the somatic hypermutation defect resulted in impaired affinity maturation of autoantibodies in these mice and explains the low levels of specific anti-dsDNA antibodies in the heterozygotes. This correlated with a delay in the development of kidney damage. These results imply that AID levels impact the class switch recombination and somatic hypermutation mechanisms and directly implicate affinity maturation of autoantibodies in autoimmunity.
机译:我们以前曾报道过,活化诱导的脱氨酶(AID)杂合MRL / lpr小鼠的血清抗dsDNA自身抗体水平明显低于AID野生型同窝仔。给定AID的已知功能,在这里我们检查了杂合子中病原性自身抗体的减少是否是类开关重组,体细胞超突变或两者均缺陷的结果。我们报告说,除了免疫球蛋白G3(IgG3)以外,其他大多数同种型的开关重组均受到严重损害。但是,即使在非常年轻的小鼠中,IgG的血清水平也与AID野生型水平相似。 Peyer斑块在B细胞中的突变积累也显示杂合体中体细胞超突变的减少。与转换缺陷不同,超突变缺陷可能导致体内效应,因为来自杂合子的血清IgG抗体对dsDNA的亲和力明显低于来自野生型同窝仔的血清IgG抗体。这表明体细胞超突变缺陷导致这些小鼠自身抗体的亲和力成熟受损,并解释了杂合子中特异性抗dsDNA抗体水平低。这与肾脏损害发展的延迟有关。这些结果暗示AID水平影响类别开关重组和体细胞超突变机制,并直接暗示自身抗体的亲和力成熟在自身免疫中。

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