Wheeler Richard John
Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, United Kingdom, and Max Planck Institute of Molecular Cell Biology and Genetics, 01307 Dresden, Germany
Mol Biol Cell. 2015 Nov 5;26(22):3898-903. doi: 10.1091/mbc.E15-03-0151.
Tools to analyze cyclical cellular processes, particularly the cell cycle, are of broad value for cell biology. Cell cycle synchronization and live-cell time-lapse observation are widely used to analyze these processes but are not available for many systems. Simple mathematical methods built on the ergodic principle are a well-established, widely applicable, and powerful alternative analysis approach, although they are less widely used. These methods extract data about the dynamics of a cyclical process from a single time-point "snapshot" of a population of cells progressing through the cycle asynchronously. Here, I demonstrate application of these simple mathematical methods to analysis of basic cyclical processes--cycles including a division event, cell populations undergoing unicellular aging, and cell cycles with multiple fission (schizogony)--as well as recent advances that allow detailed mapping of the cell cycle from continuously changing properties of the cell such as size and DNA content. This includes examples using existing data from mammalian, yeast, and unicellular eukaryotic parasite cell biology. Through the ongoing advances in high-throughput cell analysis by light microscopy, electron microscopy, and flow cytometry, these mathematical methods are becoming ever more important and are a powerful complementary method to traditional synchronization and time-lapse cell cycle analysis methods.
用于分析周期性细胞过程,尤其是细胞周期的工具,对细胞生物学具有广泛的价值。细胞周期同步化和活细胞延时观察被广泛用于分析这些过程,但许多系统无法采用这些方法。基于遍历原理构建的简单数学方法是一种成熟、广泛适用且强大的替代分析方法,尽管其应用不太广泛。这些方法从一群异步经历细胞周期的细胞的单个时间点“快照”中提取有关周期性过程动态的数据。在此,我展示了这些简单数学方法在分析基本周期性过程中的应用,这些过程包括包含分裂事件的周期、经历单细胞衰老的细胞群体以及具有多次分裂(裂体生殖)的细胞周期,以及最近的进展,这些进展允许根据细胞不断变化的特性(如大小和DNA含量)对细胞周期进行详细映射。这包括使用来自哺乳动物、酵母和单细胞真核寄生虫细胞生物学的现有数据的示例。随着通过光学显微镜、电子显微镜和流式细胞术进行的高通量细胞分析不断取得进展,这些数学方法正变得越来越重要,并且是传统同步化和延时细胞周期分析方法的有力补充方法。