控制b细胞群扩增的BCR和CD40信号整合中的协同和拮抗作用。

IF 8.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Helen Huang, Haripriya Vaidehi Narayanan, Mark Yankai Xiang, Vaibhava Kesarwani, Alexander Hoffmann
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引用次数: 0

摘要

在对感染或疫苗接种的反应中,淋巴结必须选择抗原反应性b细胞,同时消除自身反应性b细胞。b细胞通过与抗原结合的b细胞受体(BCR)和抗原识别t细胞的CD40受体进行指令。BCR和CD40信号是如何定量整合以共同决定b细胞命运的尚不清楚。在这里,我们建立了一个基于微分方程的BCR和CD40信号网络激活NFκB的模型。该模型概括了NFκB在BCR和CD40刺激下的动态,并与已建立的细胞周期和生存控制的细胞决策模型相关联,从而得出细胞群体动态。然而,在共刺激下,NFκB的动态预测是正确的,但在实验中没有观察到预测的增强种群扩张。我们发现这种差异是由于bcr诱导的caspase活性导致的,除非nf κ b诱导的存活基因及时表达保护它们,否则caspase活性可能会引发方正细胞的凋亡。迭代模型预测和连续共刺激实验揭示了BCR和CD40信号的复杂非单调整合如何控制b细胞的阳性和阴性选择。我们的工作提示了一种调节抗体反应中b细胞选择严格性的时间校对机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergy and antagonism in the integration of BCR and CD40 signals that control B-cell population expansion.

In response to infection or vaccination, lymph nodes must select antigen-reactive B-cells while eliminating auto-reactive B-cells. B-cells are instructed via B-cell receptor (BCR), which binds antigen, and CD40 receptor by antigen-recognizing T-cells. How BCR and CD40 signaling are integrated quantitatively to jointly determine B-cell fate decisions remains unclear. Here, we developed a differential-equations-based model of BCR and CD40 signaling networks activating NFκB. The model recapitulates NFκB dynamics upon BCR and CD40 stimulation, and when linked to established cell decision models of cell cycle and survival control, the resulting cell population dynamics. However, upon costimulation, NFκB dynamics were correctly predicted but the predicted potentiated population expansion was not observed experimentally. We found that this discrepancy was due to BCR-induced caspase activity that may trigger apoptosis in founder cells, unless timely NFκB-induced survival gene expression protects them. Iterative model predictions and sequential co-stimulation experiments revealed how complex non-monotonic integration of BCR and CD40 signals controls positive and negative selection of B-cells. Our work suggests a temporal proof-reading mechanism for regulating the stringency of B-cell selection during antibody responses.

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来源期刊
Molecular Systems Biology
Molecular Systems Biology 生物-生化与分子生物学
CiteScore
18.50
自引率
1.00%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Systems biology is a field that aims to understand complex biological systems by studying their components and how they interact. It is an integrative discipline that seeks to explain the properties and behavior of these systems. Molecular Systems Biology is a scholarly journal that publishes top-notch research in the areas of systems biology, synthetic biology, and systems medicine. It is an open access journal, meaning that its content is freely available to readers, and it is peer-reviewed to ensure the quality of the published work.
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