Thornton Brian R, Chen Katherine C, Cross Frederick R, Tyson John J, Toczyski David P
Cancer Research Institute, Department of Biochemistry and Biophysics, University of California, San Francisco, USA.
Cell Cycle. 2004 May;3(5):629-33. Epub 2004 May 3.
The construction of viable Saccharomyces cerevisiae strains that lack the anaphase promoting complex (APC) was recently reported. The normally lethal deletions of APC genes were suppressed by the double deletion of the PDS1 and CLB5 genes in conjunction with the insertion of multiple copies of the SIC1 gene controlled by its endogenous promoter. It was proposed that cyclic expression and degradation of Sic1 results in oscillations of Clb/CDK activity necessary for the cell cycle. We have used an updated version of a mathematical model of the yeast cell cycle to model strains that lack the APC. With a few modifications, the model accurately simulates the viability of Apc- strains, as well as the phenotypes of 27 other previously characterized strains. We discuss a few minor inconsistencies between the model and experiment, and how these may inform future revisions to the model.
最近有报道称构建了缺乏后期促进复合物(APC)的酿酒酵母可行菌株。APC基因通常致死性的缺失通过PDS1和CLB5基因的双缺失以及由其内源启动子控制的SIC1基因多拷贝的插入而得到抑制。有人提出,Sic1的周期性表达和降解导致细胞周期所需的Clb/CDK活性振荡。我们使用了酵母细胞周期数学模型的更新版本来模拟缺乏APC的菌株。经过一些修改,该模型准确地模拟了Apc-菌株的活力以及其他27种先前已表征菌株的表型。我们讨论了模型与实验之间的一些小不一致之处,以及这些如何为模型的未来修订提供参考。