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证据表明,Yaa 诱导边缘区 B 细胞缺失是树突状细胞介导的增强激活的结果。

Evidence that Yaa-induced loss of marginal zone B cells is a result of dendritic cell-mediated enhanced activation.

机构信息

Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, Geneva 1211, Switzerland.

出版信息

J Autoimmun. 2010 Jun;34(4):349-55. doi: 10.1016/j.jaut.2010.01.001. Epub 2010 Feb 10.

Abstract

The development of systemic lupus is accelerated by the Yaa (Y-linked autoimmune acceleration) mutation, which is the consequence of a translocation of the telomeric end containing the Tlr7 gene from the X chromosome onto the Y chromosome. However, the loss of marginal zone (MZ) B cells, one of the Yaa-linked cellular abnormalities, has previously been shown to be unrelated to the Tlr7 gene duplication, and the present study therefore aimed to investigate the mechanism responsible for MZ B-cell loss. Analyses of Yaa and non-Yaa C57BL/6 male mice expressing an MD4 anti-HEL IgM transgene or those deficient in fms-like tyrosine kinase 3 ligand (FL) revealed that the proportion of MZ B cells in these Yaa mice was comparable to that of the respective non-Yaa control mice. Notably, the activation of MZ B cells was compromised in both of these transgenic model systems, due to the absence of cognate antigens or the impaired development of dendritic cells, respectively. These results contrasted with the loss of MZ B cells in non-Yaa mice treated with FL and the lack of accumulation of MZ B cells in Yaa mice treated with a B-cell survival factor, BAFF. Taken together, our results suggest that the persistent and enhanced activation of Yaa-bearing hyperactive MZ B cells by dendritic cells is responsible for the loss of this B-cell subset in Yaa mice.

摘要

系统性红斑狼疮的发展是由 Yaa(Y 连锁自身免疫加速)突变加速的,该突变是 Tlr7 基因端粒末端从 X 染色体易位到 Y 染色体的结果。然而,先前已经表明,边缘区(MZ)B 细胞的缺失与 Tlr7 基因重复无关,并且本研究旨在探讨导致 MZ B 细胞缺失的机制。对表达 MD4 抗 HEL IgM 转基因或缺乏 fms 样酪氨酸激酶 3 配体(FL)的 Yaa 和非 Yaa C57BL/6 雄性小鼠进行分析表明,这些 Yaa 小鼠中的 MZ B 细胞比例与各自的非 Yaa 对照小鼠相当。值得注意的是,由于缺乏同源抗原或树突状细胞发育受损,这两种转基因模型系统中的 MZ B 细胞激活均受到损害。这些结果与用 FL 处理的非 Yaa 小鼠中 MZ B 细胞的缺失以及用 B 细胞存活因子 BAFF 处理的 Yaa 小鼠中 MZ B 细胞的积累缺乏形成对比。总之,我们的结果表明,树突状细胞对 Yaa 携带的高活性 MZ B 细胞的持续和增强激活是导致 Yaa 小鼠中该 B 细胞亚群缺失的原因。

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