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狼疮特异性抗体显示出体细胞突变模式的改变。

Lupus-specific antibodies reveal an altered pattern of somatic mutation.

作者信息

Manheimer-Lory A J, Zandman-Goddard G, Davidson A, Aranow C, Diamond B

机构信息

Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

J Clin Invest. 1997 Nov 15;100(10):2538-46. doi: 10.1172/JCI119796.

Abstract

The F4 idiotype is a heavy chain determinant expressed almost exclusively on IgG immunoglobulins and is highly associated with specificity for double-stranded DNA. Since high-titered F4 expression is present predominantly in sera of patients with systemic lupus erythematosus (SLE), we thought F4+ IgG antibodies might constitute a useful subset of immunoglobulins in which to investigate lupus-specific alterations in variable (V) region gene expression or in the process of somatic mutation. This molecular analysis of F4+ B cell lines generated from lupus patients demonstrates that despite the strong association of F4 reactivity with specificity for native DNA, there is no apparent VH gene restriction. Furthermore, VH gene segments encoding these antibodies are also used in protective immune responses. An examination of the process of somatic mutation in F4+ antibodies showed no abnormality in frequency of somatic mutation nor in the distribution of mutations in complementarity-determining regions or framework regions. However, there was a decrease in targeting of mutations to putative mutational hot spots. This subtle difference in mutations present in these antibodies may reflect an intrinsic defect in mutational machinery or, more likely, altered state of B cell activation that affects the mutational process and perhaps also negative selection.

摘要

F4独特型是一种几乎仅在IgG免疫球蛋白上表达的重链决定簇,且与双链DNA特异性高度相关。由于高滴度的F4表达主要存在于系统性红斑狼疮(SLE)患者的血清中,我们认为F4 + IgG抗体可能构成免疫球蛋白的一个有用亚群,可用于研究可变(V)区基因表达或体细胞突变过程中的狼疮特异性改变。对狼疮患者产生的F4 + B细胞系进行的这种分子分析表明,尽管F4反应性与天然DNA特异性密切相关,但没有明显的VH基因限制。此外,编码这些抗体的VH基因片段也用于保护性免疫反应。对F4 +抗体体细胞突变过程的检查显示,体细胞突变频率以及互补决定区或框架区突变分布均无异常。然而,突变靶向假定突变热点的情况有所减少。这些抗体中存在的这种突变细微差异可能反映了突变机制的内在缺陷,或者更有可能反映了影响突变过程以及可能的阴性选择的B细胞激活状态改变。

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