首页> 外文期刊>The journal of immunology >Prolonged Apoptotic Cell Accumulation in Germinal Centers of Mer-Deficient Mice Causes Elevated B Cell and CD4+ Th Cell Responses Leading to Autoantibody Production
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Prolonged Apoptotic Cell Accumulation in Germinal Centers of Mer-Deficient Mice Causes Elevated B Cell and CD4+ Th Cell Responses Leading to Autoantibody Production

机译:Mer缺陷小鼠的生发中心中凋亡细胞的长时间积累导致B细胞和CD4 + Th细胞应答升高,导致自身抗体产生。

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Mer receptor tyrosine kinase is a member of the Tyro-3/Axl/Mer (TAM) subfamily of receptor tyrosine kinases, and its expression on phagocytes facilitates their clearance of apoptotic cells (ACs). Mer expression in germinal centers (GCs) occurs predominantly on tingible body macrophages. B and T cells do not express Mer. In this study, we show that Mer deficiency ((Mer?/?) resulted in the long-term accumulation of ACs primarily in GCs and not in the T cell zone, marginal zone, or red pulp areas of the spleen. AC accumulation in GCs led to augmented Ab-forming cell, GC, and IgG2 Ab responses in Mer?/? mice, which were sustained for at least 80 d. Enhanced responses in Mer?/? mice were due to increased activation and proliferation of B cells and CD4+ Th cells, including follicular helper T cells, which resulted in high titers of anti-nuclear Abs in Mer?/? mice compared with wild-type controls. Secondary IgG-producing Ab-forming cell, total IgG, and IgG2 Ab responses were also increased in Mer?/? mice. Finally, compared with wild-type controls, Mer?/? mice had increased percentage of IFN-γ–producing CD4+ Th cells and elevated levels of Th1 (i.e., IL-2 and IFN-γ) and proinflammatory (i.e., TNF and IL-6) cytokines, consistent with elevated levels of Th1-biased IgG2 Abs in Mer?/? mice. Together, our results demonstrate that Mer deficiency induces prolonged accumulation of ACs in GCs, resulting in dysregulation of GC B cell and CD4+ Th cell responses and Th1 cytokine production, leading to alteration of B cell tolerance and the development of autoantibodies.
机译:Mer受体酪氨酸激酶是受体酪氨酸激酶的Tyro-3 / Axl / Mer(TAM)亚家族的成员,其在吞噬细胞上的表达有助于其清除凋亡细胞(AC)。 Mer在生发中心(GC)中的表达主要发生在可食用的身体巨噬细胞上。 B和T细胞不表达Mer。在这项研究中,我们表明Mer缺乏症((Mer?/?)导致AC长期积累,主要是在GC中,而不是脾的T细胞区,边缘区或红髓区。 GCs导致至少持续80 d的Mer?/?小鼠的Ab形成细胞,GC和IgG2 Ab反应增强; Mer?/?小鼠的响应增强是由于B细胞的活化和增殖增加。与野生型对照相比,CD4 + Th细胞(包括卵泡辅助性T细胞)在Merα/β小鼠中产生了高滴度的抗核抗体,产生次级IgG的Ab形成细胞,总IgG和IgG2 Ab反应是最后,与野生型对照组相比,Merα/α小鼠的产生IFN-γ的CD4 + Th细胞百分比增加,Th1(即IL-2和IFN-γ)水平升高。 )和促炎(即TNF和IL-6)细胞因子,与Mer?/?小鼠中Th1偏爱的IgG2 Abs水平升高相一致。证明Mer缺乏会导致AC在GC中的积累时间延长,从而导致GC B细胞和CD4 + Th细胞反应以及Th1细胞因子生成失调,从而导致B细胞耐受性改变和自身抗体的发展。

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