Czajkowsky Daniel M, Liu Jie, Hamlin Joyce L, Shao Zhifeng
Department of Molecular Physiology and Biological Physics, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.
J Mol Biol. 2008 Jan 4;375(1):12-9. doi: 10.1016/j.jmb.2007.10.046. Epub 2007 Oct 23.
It is generally believed that DNA replication in most eukaryotes proceeds according to a precise program in which there is a defined temporal order by which each chromosomal region is duplicated. However, the regularity of this program at the level of individual chromosomes, in terms of both the relative timing and the size of the DNA domain, has not been addressed. Here, the replication of chromosome VI from synchronized budding yeast was studied at a resolution of approximately 1 kb with DNA combing and fluorescence microscopy. Contrary to what would be expected from cells following a rigorous temporal program, no two molecules exhibited the same replication pattern. Moreover, a direct evaluation of the extent to which the replication of distant chromosomal segments was coordinated indicates that the overwhelming majority of these segments were replicated independently. Importantly, averaging the patterns of all the fibers examined recapitulates the ensemble-averaged patterns obtained from population studies of the replication of chromosome VI. Thus, rather than an absolutely defined temporal order of replication, replication timing appears to be essentially probabilistic within individual cells, exhibiting only temporal tendencies within extended domains.
一般认为,大多数真核生物中的DNA复制是按照精确的程序进行的,其中每个染色体区域的复制都有明确的时间顺序。然而,就DNA结构域的相对时间和大小而言,该程序在单个染色体水平上的规律性尚未得到研究。在这里,利用DNA梳理和荧光显微镜技术,以约1 kb的分辨率研究了同步化的芽殖酵母中第六条染色体的复制。与遵循严格时间程序的细胞所预期的情况相反,没有两个分子表现出相同的复制模式。此外,对远距离染色体片段复制的协调程度的直接评估表明,这些片段中的绝大多数是独立复制的。重要的是,对所有检测纤维的模式进行平均,概括了从第六条染色体复制的群体研究中获得的总体平均模式。因此,复制时间似乎在单个细胞内本质上是概率性的,而不是绝对确定的复制时间顺序,仅在扩展区域内表现出时间趋势。