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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The mutation patterns in B-cell immunoglobulin receptors reflect the influence of selection acting at multiple time-scales
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The mutation patterns in B-cell immunoglobulin receptors reflect the influence of selection acting at multiple time-scales

机译:B细胞免疫球蛋白受体的突变模式反映了选择在多个时间尺度上的影响

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During the several-week course of an immune response, B cells undergo a process of clonal expansion, somatic hypermutation of the immunoglobulin (Ig) genes and affinity-dependent selection. Over a lifetime, each B cell may participate in multiple rounds of affinity maturation as part of different immune responses. These two time-scales for selection are apparent in the structure of B-cell lineage trees, which often contain a 'trunk' consisting of mutations that are shared across all members of a clone, and several branches that form a 'canopy' consisting of mutations that are shared by a subset of clone members. The influence of affinity maturation on the B-cell population can be inferred by analysing the pattern of somatic mutations in the Ig. While global analysis of mutation patterns has shown evidence of strong selection pressures shaping the B-cell population, the effect of different time-scales of selection and diversification has not yet been studied. Analysis of B cells from blood samples of three healthy individuals identifies a range of clone sizes with lineage trees that can contain long trunks and canopies indicating the significant diversity introduced by the affinity maturation process. We here show that observed mutation patterns in the framework regions (FWRs) are determined by an almost purely purifying selection on both short and long time-scales. By contrast, complementarity determining regions (CDRs) are affected by a combination of purifying and antigen-driven positive selection on the short term, which leads to a net positive selection in the long term. In both the FWRs and CDRs, long-term selection is strongly dependent on the heavy chain variable gene family.
机译:在几周的免疫应答过程中,B细胞经历了克隆扩增,免疫球蛋白(Ig)基因的体细胞超突变和亲和力依赖性选择的过程。在一生中,每个B细胞都可能参与多轮亲和力成熟,作为不同免疫反应的一部分。这两个选择的时标在B细胞谱系树的结构中很明显,它们通常包含一个“主体”,该“主体”由在克隆的所有成员之间共享的突变组成,而几个分支则组成一个“冠层”,由一部分克隆成员共享的突变。亲和力成熟对B细胞群体的影响可以通过分析Ig中的体细胞突变模式来推断。尽管对突变模式的全局分析已显示出强大的选择压力塑造了B细胞群体,但尚未研究选择和多样化的不同时间尺度的影响。对来自三名健康个体血液样本中B细胞的分析确定了一系列血统树,这些血统树的谱系可能包含较长的树干和冠层,表明亲和力成熟过程引入了显着的多样性。我们在这里显示,观察到的框架区域(FWRs)中的突变模式是由短时和长时尺度上几乎纯净的纯化决定的。相比之下,互补决定区(CDR)在短期内受纯化和抗原驱动的阳性选择的组合影响,从长期来看,这将导致净阳性选择。在FWR和CDR中,长期选择在很大程度上取决于重链可变基因家族。

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