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Two Compound Replication Origins in Saccharomyces cerevisiae Contain Redundant Origin Recognition Complex Binding Sites

机译:酿酒酵母中的两个化合物复制起点包含冗余的起点识别复合物结合位点。

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摘要

While many of the proteins involved in the initiation of DNA replication are conserved between yeasts and metazoans, the structure of the replication origins themselves has appeared to be different. As typified by ARS1, replication origins in Saccharomyces cerevisiae are <150 bp long and have a simple modular structure, consisting of a single binding site for the origin recognition complex, the replication initiator protein, and one or more accessory sequences. DNA replication initiates from a discrete site. While the important sequences are currently less well defined, metazoan origins appear to be different. These origins are large and appear to be composed of multiple, redundant elements, and replication initiates throughout zones as large as 55 kb. In this report, we characterize two S. cerevisiae replication origins, ARS101 and ARS310, which differ from the paradigm. These origins contain multiple, redundant binding sites for the origin recognition complex. Each binding site must be altered to abolish origin function, while the alteration of a single binding site is sufficient to inactivate ARS1. This redundant structure may be similar to that seen in metazoan origins.
机译:尽管许多与DNA复制有关的蛋白质在酵母和后生动物之间是保守的,但复制起点的结构本身却似乎有所不同。如以ARS1为代表的,酿酒酵母中的复制起点长度小于150 bp,并具有简单的模块化结构,该结构由起点识别复合物的单个结合位点,复制起始蛋白和一个或多个辅助序列组成。 DNA复制从一个离散位点开始。尽管目前对重要序列的定义不太明确,但后生动物起源似乎有所不同。这些起源很大,似乎由多个冗余元素组成,并且复制在整个55 kb的区域内启动。在此报告中,我们描述了两种酿酒酵母复制起点,即ARS101和ARS310,它们与范例不同。这些起源包含多个用于起源识别复合体的冗余绑定位点。必须改变每个结合位点以消除起源功能,而单个结合位点的改变足以灭活ARS1。这种冗余结构可能类似于后生动物起源中看到的结构。

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