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原发性小鼠肝细胞中 NFκB 信号的系统生物学研究。

A Systems Biology Study on NFκB Signaling in Primary Mouse Hepatocytes.

机构信息

Institute of Pathology, University Hospital of Heidelberg Heidelberg, Germany.

出版信息

Front Physiol. 2012 Dec 31;3:466. doi: 10.3389/fphys.2012.00466. eCollection 2012.

Abstract

The cytokine tumor necrosis factor-alpha (TNFα) is one of the key factors during the priming phase of liver regeneration as well as in hepatocarcinogenesis. TNFα activates the nuclear factor κ-light-chain-enhancer of activated B cells (NFκB) signaling pathway and contributes to the conversion of quiescent hepatocytes to activated hepatocytes that are able to proliferate in response to growth factor stimulation. Different mathematical models have been previously established for TNFα/NFκB signaling in the context of tumor cells. Combining these mathematical models with time-resolved measurements of expression and phosphorylation of TNFα/NFκB pathway constituents in primary mouse hepatocytes revealed that an additional phosphorylation step of the NFκB isoform p65 has to be considered in the mathematical model in order to sufficiently describe the dynamics of pathway activation in the primary cells. Also, we addressed the role of basal protein turnover by experimentally measuring the degradation rate of pivotal players in the absence of TNFα and including this information in the model. To elucidate the impact of variations in the protein degradation rates on TNFα/NFκB signaling on the overall dynamic behavior we used global sensitivity analysis that accounts for parameter uncertainties and showed that degradation and translation of p65 had a major impact on the amplitude and the integral of p65 phosphorylation. Finally, our mathematical model of TNFα/NFκB signaling was able to predict the time-course of the complex formation of p65 and of the inhibitor of NFκB (IκB) in primary mouse hepatocytes, which was experimentally verified. Hence, we here present a mathematical model for TNFα/NFκB signaling in primary mouse hepatocytes that provides an important basis to quantitatively disentangle the complex interplay of multiple factors in liver regeneration and tumorigenesis.

摘要

细胞因子肿瘤坏死因子-α(TNFα)是肝再生初始阶段以及肝癌发生过程中的关键因素之一。TNFα 激活核因子 κ-轻链增强子的 B 细胞(NFκB)信号通路,并有助于将静止的肝细胞转化为能够响应生长因子刺激而增殖的激活的肝细胞。先前已经建立了用于肿瘤细胞中 TNFα/NFκB 信号的不同数学模型。将这些数学模型与对原代小鼠肝细胞中 TNFα/NFκB 通路成分的表达和磷酸化的时程测量相结合,结果表明,在数学模型中必须考虑 NFκB 同工型 p65 的另外一个磷酸化步骤,以便充分描述原代细胞中通路激活的动力学。此外,我们通过实验测量在没有 TNFα 的情况下关键分子的降解速率,并将该信息纳入模型,解决了基础蛋白周转的作用。为了阐明蛋白降解率的变化对 TNFα/NFκB 信号对整体动态行为的影响,我们使用了全局敏感性分析,该分析考虑了参数不确定性,并表明 p65 的降解和翻译对 p65 磷酸化的幅度和积分有重大影响。最后,我们的 TNFα/NFκB 信号数学模型能够预测原代小鼠肝细胞中 p65 和 NFκB 抑制剂(IκB)的复杂形成的时间过程,这在实验中得到了验证。因此,我们在此提出了一个用于原代小鼠肝细胞中 TNFα/NFκB 信号的数学模型,为定量解析肝再生和肿瘤发生过程中多种因素的复杂相互作用提供了重要基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2f5/3533138/5716ef83d1f8/fphys-03-00466-g001.jpg

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