Shahaf Gitit, Barak Michal, Zuckerman Neta S, Swerdlin Naamah, Gorfine Malka, Mehr Ramit
Mina & Everard Goodman Faculty of Life Sciences, Building 212, Bar-Ilan University, Ramat-Gan 52900, Israel.
J Theor Biol. 2008 Nov 21;255(2):210-22. doi: 10.1016/j.jtbi.2008.08.005. Epub 2008 Aug 13.
During the immune response, the generation of memory B lymphocytes in germinal centers involves affinity maturation of the cells' antigen receptors, based on somatic hypermutation of receptor genes and antigen-driven selection of the resulting mutants. Affinity maturation is vital for immune protection, and is the basis of humoral immune learning and memory. Lineage trees of somatically hypermutated immunoglobulin genes often serve to qualitatively illustrate claims concerning the dynamics of affinity maturation in germinal centers. Here, we derive the quantitative relationships between parameters characterizing affinity maturation dynamics (proliferation, differentiation and mutation rates, initial affinity of the Ig to the antigen, and selection thresholds) and the mathematical properties of lineage trees, using a computer simulation which combines mathematical models for all mature B cell populations, stochastic models of hypermutation and selection, lineage tree generation and measurement of graphical tree characteristics. We identified seven key lineage tree properties, and found correlations of these with initial clone affinity and with the selection threshold. These two parameters were found to be the main factors affecting lineage tree shapes in both primary and secondary response trees. The results also confirm that recycling from centrocytes back to centroblasts is highly likely.
在免疫反应过程中,生发中心记忆B淋巴细胞的产生涉及细胞抗原受体的亲和力成熟,这基于受体基因的体细胞超突变以及抗原驱动的对产生的突变体的选择。亲和力成熟对免疫保护至关重要,是体液免疫学习和记忆的基础。体细胞超突变免疫球蛋白基因的谱系树常被用于定性说明有关生发中心亲和力成熟动态的观点。在此,我们使用计算机模拟得出了表征亲和力成熟动态的参数(增殖、分化和突变率、Ig对抗原的初始亲和力以及选择阈值)与谱系树数学特性之间的定量关系,该模拟结合了所有成熟B细胞群体的数学模型、超突变和选择的随机模型、谱系树生成以及图形树特征的测量。我们确定了七个关键的谱系树特性,并发现了它们与初始克隆亲和力以及选择阈值的相关性。发现这两个参数是影响初次和二次反应树中谱系树形状的主要因素。结果还证实,中心细胞回转为中心母细胞的循环很可能发生。