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首页> 外文期刊>Molecular Immunology >C1q deficiency promotes the production of transgenic-derived IgM and IgG3 autoantibodies in anti-DNA knock-in transgenic mice.
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C1q deficiency promotes the production of transgenic-derived IgM and IgG3 autoantibodies in anti-DNA knock-in transgenic mice.

机译:C1q缺乏会促进抗DNA敲入转基因小鼠中转基因来源的IgM和IgG3自身抗体的产生。

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摘要

C1q-deficient mice have been shown to develop a lupus-like disease and to display an impaired clearance of apoptotic cells that are enriched in lupus autoantigens. However, the role of C1q in the regulation of autoreactive B cells remains debatable. To explore this we crossed MRL/Mp C1q-deficient mice with knock-in transgenic (Tg) mice expressing an anti-ssDNA antibody (VH3H9R and VH3H9R/VLkappa8R). Analysis of the VH3H9R mice showed that in the absence of C1q higher titres of Tg-derived IgM and IgG3 anti-ssDNA antibodies were detectable. In contrast, in the VH3H9R/VLkappa8R C1q-deficient animals no increase in Tg antibody levels was observed. In both models the lack of C1q induced a marked reduction of marginal zone B cells and this was paralleled by a significant increase in the percentage of plasmocytes. Thus, one could postulate that in the absence of C1q the failure to clear efficiently dying cells provides an additional stimulus to the autoreactive Tg B cells resulting in their emigration from the marginal zone B cell compartment with subsequent increase in plasmocytes. However, the lack of C1q led to an increased production of Tg IgM and IgG3 antibodies only in VH3H9R mice indicating that additional genetic susceptibility factors are required to break self-tolerance.
机译:C1q缺陷型小鼠已显示出患上狼疮样疾病,并显示富含狼疮自身抗原的凋亡细胞清除功能受损。然而,C1q在调节自身反应性B细胞中的作用仍然存在争议。为了探索这一点,我们将MRL / Mp C1q缺陷型小鼠与表达抗ssDNA抗体(VH3H9R和VH3H9R / VLkappa8R)的敲入转基因(Tg)小鼠杂交。对VH3H9R小鼠的分析表明,在没有C1q的情况下,可以检测到更高滴度的Tg衍生的IgM和IgG3抗-ssDNA抗体。相反,在缺乏VH3H9R / VLkappa8R C1q的动物中,未观察到Tg抗体水平增加。在这两个模型中,缺乏C1q导致边缘区B细胞明显减少,与此同时,浆细胞百分比显着增加。因此,可以假设在没有C1q的情况下,无法清除有效死亡的细胞对自身反应性Tg B细胞提供了额外的刺激,从而导致它们从边缘区B细胞隔室移出,随后浆细胞增多。但是,缺乏C1q导致仅在VH3H9R小鼠中Tg IgM和IgG3抗体的产生增加,表明需要其他遗传易感性因子才能打破自我耐受性。

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