Porro Danilo, Vai Marina, Vanoni Marco, Alberghina Lilia, Hatzis Christos
Department of Biotechnology and Biosciences, University of Milano-Bicocca, Milan 20126, Italy.
Cytometry A. 2009 Feb;75(2):114-20. doi: 10.1002/cyto.a.20689.
Model organisms and in particular the budding yeast Saccharomyces cerevisiae have been instrumental in advancing our understanding of cell cycle progression. The asymmetric division of the budding yeast and the tight coupling between cell growth and division have challenged the theoretical understanding of the cell size structure of growing yeast populations. Past efforts have centered on modeling the steady-state theoretical age distribution for asymmetric division from which a cell size distribution can be derived assuming dispersion of cell size within each age class. Different developments, especially in the field of flow cytometry, allowed the determination of a number of cellular properties and their joint distributions for the entire population and the different subpopulations as well. A new rigorous framework for modeling directly the dynamics of size distributions of structured yeast populations has been proposed, which readily extends to modeling of more complex conditions, such as transient growth. Literature on the structure of growing yeast populations and modeling of cell cycle progression is reviewed.
模式生物,尤其是芽殖酵母酿酒酵母,在推动我们对细胞周期进程的理解方面发挥了重要作用。芽殖酵母的不对称分裂以及细胞生长与分裂之间的紧密耦合,对不断生长的酵母群体的细胞大小结构的理论理解提出了挑战。过去的努力主要集中在对不对称分裂的稳态理论年龄分布进行建模,在此基础上,假设每个年龄组内细胞大小存在离散性,进而推导出细胞大小分布。不同的进展,特别是在流式细胞术领域,使得人们能够确定整个群体以及不同亚群体的许多细胞特性及其联合分布。有人提出了一个新的严格框架,用于直接对结构化酵母群体大小分布的动态进行建模,该框架很容易扩展到对更复杂条件(如瞬态生长)的建模。本文对有关不断生长的酵母群体结构和细胞周期进程建模的文献进行了综述。