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本文引用的文献

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Limiting dilution analysis of the cells of immune system I. The clonal basis of the immune response.免疫系统细胞的有限稀释分析I. 免疫反应的克隆基础。
Immunol Today. 1984 Sep;5(9):265-8. doi: 10.1016/0167-5699(84)90137-3.
2
TdT-accessible breaks are scattered over the immunoglobulin V domain in a constitutively hypermutating B cell line.在一个组成型高突变的B细胞系中,末端脱氧核苷酸转移酶(TdT)可及的断裂点分散在免疫球蛋白V结构域上。
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Regulation of cytoplasmic, surface and soluble forms of CD40 ligand in mouse B cells.小鼠B细胞中CD40配体的细胞质、表面及可溶性形式的调控
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Base-specific sequences that bias somatic hypermutation deduced by analysis of out-of-frame human IgVH genes.通过对移码人IgVH基因分析推断出的偏向体细胞高频突变的碱基特异性序列。
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Lymphocyte development and selection in germinal centers.
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In vitro triggering of somatic mutation in human naive B cells.人幼稚B细胞中体细胞突变的体外触发
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The changing preference of T and B cells for partners as T-dependent antibody responses develop.随着T细胞依赖性抗体应答的发展,T细胞和B细胞对伙伴的偏好发生变化。
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Maintenance of human germinal center B cells in vitro.体外维持人生发中心B细胞
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维持分离的生发中心B细胞中人类免疫球蛋白V基因高突变的信号。

Signals sustaining human immunoglobulin V gene hypermutation in isolated germinal centre B cells.

作者信息

Dahlenborg K, Pound J D, Gordon J, Borrebaeck C A, Carlsson R

机构信息

Department of Immunotechnology, Lund University, Lund, Sweden.

出版信息

Immunology. 2000 Oct;101(2):210-7. doi: 10.1046/j.1365-2567.2000.00091.x.

DOI:10.1046/j.1365-2567.2000.00091.x
PMID:11012774
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2327070/
Abstract

Affinity maturation of antibody responses depends on somatic hypermutation of the immunoglobulin V genes. Hypermutation is initiated specifically in proliferating B cells in lymphoid germinal centres but the signals driving this process remain unknown. This study identifies signals that promote V gene mutation in human germinal centre (GC) B cells in vitro. Single GC B cells were cultured by limiting dilution to allow detection of mutations arising during proliferation in vitro. Cells were first cultured in the presence of CD32L cell transfectants and CD40 antibody (the 'CD40 system') supplemented with combinations of cytokines capable of supporting similar levels of CD40-dependent GC B-cell growth [interleukin (IL)-10 + IL-1beta + IL-2 and IL-10 + IL-7 + IL-4]. Components of the 'EL4 system' were then added to drive differentiation, providing sufficient immunoglobulin mRNA for analysis. Analysis of VH3 genes from cultured cells by reverse transcription-polymerase chain reaction (RT-PCR)-based single-strand conformation polymorphism indicated that the combination IL-10 + IL-1beta + IL-2 promoted active V gene mutation whereas IL-10 + IL-7 + IL-4 was ineffective. This was confirmed by sequencing which also revealed that the de novo generated mutations were located in framework and complementarity-determining regions and shared characteristics with those arising in vivo. Somatic mutation in the target GC B-cell population may therefore be actively cytokine driven and not simply a consequence of continued proliferation. The experimental approach we describe should facilitate further studies of the mechanisms underlying V gene hypermutation.

摘要

抗体应答的亲和力成熟依赖于免疫球蛋白V基因的体细胞超突变。超突变特异性地起始于淋巴生发中心增殖的B细胞中,但驱动这一过程的信号仍不清楚。本研究确定了在体外促进人生发中心(GC)B细胞V基因突变的信号。通过有限稀释培养单个GC B细胞,以检测体外增殖过程中产生的突变。细胞首先在CD32L细胞转染体和CD40抗体(“CD40系统”)存在的情况下培养,并补充能够支持相似水平的CD40依赖性GC B细胞生长的细胞因子组合[白细胞介素(IL)-10 + IL-1β + IL-2和IL-10 + IL-7 + IL-4]。然后添加“EL4系统”的成分以驱动分化,提供足够的免疫球蛋白mRNA用于分析。通过基于逆转录-聚合酶链反应(RT-PCR)的单链构象多态性分析培养细胞的VH3基因,结果表明IL-10 + IL-1β + IL-2组合促进了V基因的活性突变,而IL-10 + IL-7 + IL-4则无效。测序证实了这一点,测序还显示新产生的突变位于框架区和互补决定区,并且与体内产生的突变具有共同特征。因此,目标GC B细胞群体中的体细胞突变可能是由细胞因子主动驱动的,而不仅仅是持续增殖的结果。我们描述的实验方法应有助于进一步研究V基因超突变的潜在机制。