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Dynamical modeling of the biological regulatory network of NF-kB activation in HIV-1

机译:HIV-1中NF-kB激活生物调控网络的动力学建模

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The logical formalism of René Thomas is a powerful approach for the discrete (qualitative) modeling and analysis of the Biological Regulatory Networks (BRNs). In this paper, we qualitatively model the NF-kB associated biological regulatory network in the case of HIV-1 infection. High levels of HIV-1 genes expression can be due to the increased levels of intracellular NF-kB and could thus offer a favorable environment for HIV-1 replication. The continuous production of inflammatory cytokines also stimulate NF-kB domain Rel A to replicate HIV-1. Our model shows stable steady states and cycles, giving insight into the abnormal and normal behaviors respectively. The BRN of NF-kB activation in HIV-1 replication and subsequent immune suppression leads to a stable steady state depicting vicious cycle of HIV causing its rapid replication due to uncontrolled transactivation. The qualitative cycles in the model characterize the normal immune response against HIV-1.
机译:RenéThomas的逻辑形式主义是对生物监管网络(BRN)进行离散(定性)建模和分析的有力方法。在本文中,我们定性地对HIV-1感染情况下的NF-kB相关生物调控网络进行建模。 HIV-1基因表达的高水平可能是由于细胞内NF-kB水平的升高,因此可以为HIV-1复制提供有利的环境。炎性细胞因子的连续产生也刺激NF-kB结构域Rel A复制HIV-1。我们的模型显示出稳定的稳态和周期,从而可以分别了解异常和正常行为。 HIV-1复制中NF-kB激活的BRN和随后的免疫抑制导致稳定的稳定状态,描绘了HIV的恶性循环,由于不受控制的反式激活,导致其快速复制。模型中的定性循环表征了针对HIV-1的正常免疫反应。

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