Vohradsky Jiri
Laboratory of Bioinformatics, Institute of Microbiology, ASCR, Videnska 1083, 14220 Prague, Czech Republic.
J Theor Biol. 2017 Oct 27;431:32-38. doi: 10.1016/j.jtbi.2017.07.024. Epub 2017 Jul 25.
Critical behaviour pervades scientific disciplines as diverse as geology, economy or sociology. The critical behaviour of cell control systems is an open issue whose role has not yet been fully explored. The control of the expression of lambda phage DNA in the host cell can be classified as a system with critical behaviour. Lambda phage is a virus that infects Escherichia coli. Its core genes maintain one of two states; lysogeny or lysis. Current knowledge of the lambda phage genetic network allows to build a computational model of transcriptional control of the genes involved in the lytic-lysogenic switch and to simulate the temporal changes of their expression. Here, we focused on the computational simulation of these gene expressions to demonstrate critical behaviour of the system.
临界行为遍及地质学、经济学或社会学等多种科学学科。细胞控制系统的临界行为是一个尚未被充分探索其作用的开放性问题。λ噬菌体DNA在宿主细胞中的表达调控可被归类为具有临界行为的系统。λ噬菌体是一种感染大肠杆菌的病毒。其核心基因维持溶原或裂解这两种状态之一。目前对λ噬菌体遗传网络的了解使得能够构建一个涉及溶菌-溶原转换相关基因转录调控的计算模型,并模拟其表达的时间变化。在此,我们专注于这些基因表达的计算模拟,以证明该系统的临界行为。