Lee S B, Bailey J E
Plasmid. 1984 Mar;11(2):166-77. doi: 10.1016/0147-619x(84)90021-0.
A mathematical model based on the molecular control mechanisms for lambda dv plasmid replication in a single Escherichia coli cell has been applied to simulate replication of mutant lambda dv plasmids. Model simulations of changes in repressor level and copy number resulting from mutations in the promoter-operator PROR region are consistent with experimental data. Calculated effects on lambda dv plasmid copy number of oligomer formation and of alternations in termination efficiency at tR1 also agree with experiment. The model has been employed to simulate the influence of cro mutants and of cro and tR1 double mutants on copy number and stable maintenance of lambda dv plasmid copy number. The genetic structure included in formulation of the replicon model provides a framework for relating changes in specific genetic loci on the plasmid with resulting alterations in host-plasmid system function.
基于单个大肠杆菌细胞中λdv质粒复制分子控制机制的数学模型已被用于模拟突变型λdv质粒的复制。启动子 - 操纵子PROR区域突变导致的阻遏物水平和拷贝数变化的模型模拟结果与实验数据一致。计算得出的寡聚物形成对λdv质粒拷贝数的影响以及tR1处终止效率改变的影响也与实验相符。该模型已被用于模拟cro突变体以及cro和tR1双突变体对λdv质粒拷贝数和拷贝数稳定维持的影响。复制子模型构建中包含的遗传结构为将质粒上特定基因位点的变化与宿主 - 质粒系统功能的相应改变联系起来提供了一个框架。