Friedman K L, Diller J D, Ferguson B M, Nyland S V, Brewer B J, Fangman W L
University of Washington, Department of Genetics, Seattle, Washington 98195-7360, USA.
Genes Dev. 1996 Jul 1;10(13):1595-607. doi: 10.1101/gad.10.13.1595.
Analysis of a 131-kb segment of the left arm of yeast chromosome XIV beginning 157 kb from the telomere reveals four highly active origins of replication that initiate replication late in S phase. Previous work has shown that telomeres act as determinants for late origin activation. However, at least two of the chromosome XIV origins maintain their late activation time when located on large circular plasmids, indicating that late replication is independent of telomeres. Analysis of the replication time of plasmid derivatives containing varying amounts of chromosome XIV DNA show that a minimum of three chromosomal elements, distinct from each tested origin, contribute to late activation time. These late determinants are functionally equivalent, because duplication of one set of contributing sequences can compensate for the removal of another set. Furthermore, insertion of an origin that is normally early activated into this domain results in a shift to late activation, suggesting that the chromosome XIV origins are not unique in their ability to respond to the late determinants.
对酵母十四号染色体左臂上距端粒157 kb处开始的一段131 kb片段进行分析,发现了四个高度活跃的复制起点,它们在S期后期启动复制。先前的研究表明,端粒是后期起点激活的决定因素。然而,十四号染色体上至少有两个起点位于大型环状质粒上时,仍保持其后期激活时间,这表明后期复制与端粒无关。对含有不同数量十四号染色体DNA的质粒衍生物的复制时间进行分析表明,至少有三个与每个测试起点不同的染色体元件对后期激活时间有影响。这些后期决定因素在功能上是等效的,因为一组贡献序列的重复可以补偿另一组的去除。此外,将一个通常早期激活的起点插入该区域会导致激活时间转变为后期,这表明十四号染色体起点在响应后期决定因素的能力方面并非独一无二。