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原发性免疫缺陷病 B 细胞动力学模拟。

Simulation of the Dynamics of Primary Immunodeficiencies in B Cells.

机构信息

Department of Experimental Medical Science, BMC B13, Lund University, Lund, Sweden.

出版信息

Front Immunol. 2018 Aug 2;9:1785. doi: 10.3389/fimmu.2018.01785. eCollection 2018.

Abstract

Primary immunodeficiencies (PIDs) are a group of over 300 hereditary, heterogeneous, and mainly rare disorders that affect the immune system. Various aspects of immune system and PID proteins and genes have been investigated and facilitate systems biological studies of effects of PIDs on B cell physiology and response. We reconstructed a B cell network model based on data for the core B cell receptor activation and response processes and performed semi-quantitative dynamic simulations for normal and B cell PID failure modes. The results for several knockout simulations correspond to previously reported molecular studies and reveal novel mechanisms for PIDs. The simulations for CD21, CD40, LYN, MS4A1, ORAI1, PLCG2, PTPRC, and STIM1 indicated profound changes to major transcription factor signaling and to the network. Significant effects were observed also in the BCL10, BLNK, BTK, loss-of-function CARD11, IKKB, MALT1, and NEMO, simulations whereas only minor effects were detected for PIDs that are caused by constitutively active proteins (PI3K, gain-of-function CARD11, KRAS, and NFKBIA). This study revealed the underlying dynamics of PID diseases, confirms previous observations, and identifies novel candidates for PID diagnostics and therapy.

摘要

原发性免疫缺陷病 (PIDs) 是一组超过 300 种遗传性、异质性的、主要为罕见疾病,影响免疫系统。免疫系统的各个方面以及 PID 蛋白和基因已被研究,并促进了对 PIDs 对 B 细胞生理和反应影响的系统生物学研究。我们基于核心 B 细胞受体激活和反应过程的数据,构建了一个 B 细胞网络模型,并对正常和 B 细胞 PID 故障模式进行了半定量动态模拟。几个敲除模拟的结果与先前报道的分子研究相对应,揭示了 PID 的新机制。对 CD21、CD40、LYN、MS4A1、ORAI1、PLCγ2、PTPRC 和 STIM1 的模拟表明,主要转录因子信号和网络发生了深刻变化。在 BCL10、BLNK、BTK、功能丧失性 CARD11、IKKB、MALT1 和 NEMO 的模拟中也观察到了显著的影响,而对于由组成性激活蛋白(PI3K、功能获得性 CARD11、KRAS 和 NFKBIA)引起的 PID,仅检测到微小的影响。本研究揭示了 PID 疾病的潜在动力学,证实了先前的观察结果,并确定了 PID 诊断和治疗的新候选者。

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