Laboratory of Radiation Biology, Joint Institute for Nuclear Research, 141980 Joliot-Curie 6, Dubna, Moscow Region, Russia.
J Theor Biol. 2009 Dec 7;261(3):388-95. doi: 10.1016/j.jtbi.2009.08.016. Epub 2009 Aug 21.
A mathematical model of the mutation process in bacteria Escherichia coli induced by ultraviolet radiation is developed. Our model is based on the experimental data characterizing the main processes of the bacterial SOS response. Here we have modeled a whole sequence of the events leading to the fixation of the primary DNA lesion as a point mutation. A quantitative analysis of the key ways of the SOS mutagenesis was performed in terms of modern system biology. The dynamic changes of the basic SOS protein concentrations and the process of the translesion synthesis by the modified replication complex are described quantitatively. We have also demonstrated the applicability of the developed model to the description of the mutagenesis in individual genes. As an example, an estimation of the mutation frequency in E. coli's lacI gene is performed.
建立了一个由紫外线辐射诱导的大肠杆菌突变过程的数学模型。我们的模型基于细菌 SOS 反应的主要过程的实验数据。在这里,我们将导致主要 DNA 损伤固定为点突变的整个事件序列建模。根据现代系统生物学,对 SOS 诱变的关键途径进行了定量分析。定量描述了基本 SOS 蛋白浓度的动态变化和经过修饰的复制复合物的跨损伤合成过程。我们还证明了所开发模型在描述个别基因中的突变方面的适用性。作为一个例子,对大肠杆菌 lacI 基因的突变频率进行了估计。