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Active Role of a Human Genomic Insert in Replication of a Yeast Artificial Chromosome

机译:人类基因组插入物在酵母人工染色体复制中的积极作用。

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摘要

Yeast artificial chromosomes (YACs) are a common tool for cloning eukaryotic DNA. The manner by which large pieces of foreign DNA are assimilated by yeast cells into a functional chromosome is poorly understood, as is the reason why some of them are stably maintained and some are not. We examined the replication of a stable YAC containing a 240-kb insert of DNA from the human T-cell receptor beta locus. The human insert contains multiple sites that serve as origins of replication. The activity of these origins appears to require the yeast ARS consensus sequence and, as with yeast origins, additional flanking sequences. In addition, the origins in the human insert exhibit a spacing, a range of activation efficiencies, and a variation in times of activation during S phase similar to those found for normal yeast chromosomes. We propose that an appropriate combination of replication origin density, activation times, and initiation efficiencies is necessary for the successful maintenance of YAC inserts.
机译:酵母人工染色体(YAC)是克隆真核DNA的常用工具。酵母细胞将大块外来DNA吸收到功能性染色体的方式了解得很少,这是为什么其中一些得以稳定维持而另一些却没有的原因。我们检查了一个稳定的YAC的复制,该YAC包含一个来自人类T细胞受体β基因座的240 kb DNA插入片段。人间插入物包含多个位点,可作为复制起点。这些起源的活性似乎需要酵母ARS共有序列,并且与酵母起源一样,需要附加的侧翼序列。另外,与正常酵母染色体中发现的相似,人类插入物中的起点表现出间隔,一定范围的激活效率以及在S期的激活时间变化。我们建议复制起点密度,激活时间和启动效率的适当组合是成功维护YAC插入的必要条件。

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