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Stochastic resonances in a distributed genetic broadcasting system: the NF kappa B/I kappa B paradigm

机译:分布式遗传广播系统中的随机共振:NF Kappa B / I Kappa B acrigm

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摘要

Gene regulatory networks must relay information from extracellular signals to downstream genes in an efficient, timely and coherent manner. Many complex functional tasks such as the immune response require system-wide broadcasting of information not to one but to many genes carrying out distinct functions whose dynamical binding and unbinding characteristics are widely distributed. In such broadcasting networks, the intended target sites are also often dwarfed in number by the even more numerous non-functional binding sites. Taking the genetic regulatory network of NFkB as an exemplary system we explore the impact of having numerous distributed sites on the stochastic dynamics of oscillatory broadcasting genetic networks pointing out how resonances in binding cycles control the network's specificity and performance. We also show that active kinetic regulation of binding and unbinding through molecular stripping of DNA bound transcription factors can lead to a higher coherence of gene-co-expression and synchronous clearance.
机译:基因调节网络必须以高效,及时和连贯的方式从细胞外信号到下游基因中继信息。许多复杂的功能任务,例如免疫应答需要系统范围广播的信息,而是许多基因,其进行动态结合和解除特性的众所周知的不同函数。在这种广播网络中,预期的目标站点也经常被甚至更多的非功能结合位点的数量越来越多。作为一个示例性系统,将NFKB的遗传调节网络作为示例性系统,我们探讨了在振荡广播遗传网络的随机动态上探讨了对振荡广播遗传网络的随机动态的影响,指出绑定周期中的共振控制网络的特殊性和性能。我们还表明,通过分子剥离DNA结合转录因子的结合和解压缩的活性动力学调节可以导致基因 - 共表达和同步间隙的更高相干性。

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