Ichikawa Kazuhisa, Ohshima Daisuke, Sagara Hiroshi
IET Syst Biol. 2015 Apr;9(2):41-51. doi: 10.1049/iet-syb.2013.0020.
NF-κB is a transcription factor regulating expression of more than 500 genes, and its dysfunction leads to the autoimmune and inflammatory diseases. In malignant cancer cells, NF-κB is constitutively activated. Thus the elucidation of mechanisms for NF-κB regulation is important for the establishment of therapeutic treatment caused by incorrect NF-κB responses. Cytoplasmic NF-κB translocates to the nucleus by the application of extracellular stimuli such as cytokines. Nuclear NF-κB is known to oscillate with the cycle of 1.5-4.5 h, and it is thought that the oscillation pattern regulates the expression profiles of genes. In this review, first we briefly describe regulation mechanisms of NF-κB. Next, published computational simulations on the oscillation of NF-κB are summarised. There are at least 60 reports on the computational simulation and analysis of NF-κB oscillation. Third, the importance of a 'space' for the regulation of oscillation pattern of NF-κB is discussed, showing altered oscillation pattern by the change in spatial parameters such as diffusion coefficient, nuclear to cytoplasmic volume ratio (N/C ratio), and transport through nuclear membrane. Finally, simulations in a true intracellular space (TiCS), which is an intracellular 3D space reconstructed in a computer with organelles such as nucleus and mitochondria are discussed.
核因子κB(NF-κB)是一种调控500多个基因表达的转录因子,其功能失调会导致自身免疫性疾病和炎症性疾病。在恶性癌细胞中,NF-κB持续激活。因此,阐明NF-κB的调控机制对于建立因NF-κB反应异常引起的治疗方法很重要。细胞质中的NF-κB通过细胞因子等细胞外刺激作用转移至细胞核。已知细胞核中的NF-κB以1.5 - 4.5小时的周期振荡,并且认为振荡模式调控基因的表达谱。在本综述中,首先我们简要描述NF-κB的调控机制。接下来,总结已发表的关于NF-κB振荡的计算模拟。关于NF-κB振荡的计算模拟和分析至少有60篇报道。第三,讨论“空间”对NF-κB振荡模式调控的重要性,展示了扩散系数、核质体积比(N/C比)以及通过核膜运输等空间参数变化导致的振荡模式改变。最后,讨论在真实细胞内空间(TiCS)中的模拟,TiCS是在计算机中重建的包含细胞核和线粒体等细胞器的细胞内三维空间。