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首页> 外文期刊>Molecular and Cellular Biology >Architecture of the yeast origin recognition complex bound to origins of DNA replication.
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Architecture of the yeast origin recognition complex bound to origins of DNA replication.

机译:酵母起源识别复合物的体系结构绑定到DNA复制的起源。

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In many organisms, the replication of DNA requires the binding of a protein called the initiator to DNA sites referred to as origins of replication. Analyses of multiple initiator proteins bound to their cognate origins have provided important insights into the mechanism by which DNA replication is initiated. To extend this level of analysis to the study of eukaryotic chromosomal replication, we have investigated the architecture of the Saccharomyces cerevisiae origin recognition complex (ORC) bound to yeast origins of replication. Determination of DNA residues important for ORC-origin association indicated that ORC interacts preferentially with one strand of the ARS1 origin of replication. DNA binding assays using ORC complexes lacking one of the six subunits demonstrated that the DNA binding domain of ORC requires the coordinate action of five of the six ORC subunits. Protein-DNA cross-linking studies suggested that recognition of origin sequences is mediated primarily by two different groups of ORC subunits that make sequence-specific contacts with two distinct regions of the DNA. Implications of these findings for ORC function and the mechanism of initiation of eukaryotic DNA replication are discussed.
机译:在许多生物中,DNA的复制需要一种称为引发剂的蛋白质与称为复制起点的DNA位点结合。对与其同源起源结合的多种启动子蛋白的分析,为深入了解DNA复制的启动机理提供了重要见识。为了将这一分析水平扩展到真核染色体复制的研究中,我们研究了与酵母复制起点结合的酿酒酵母起源识别复合物(ORC)的体系结构。确定对ORC起源关联重要的DNA残基表明,ORC优先与ARS1复制起点的一条链发生相互作用。使用缺少六个亚基之一的ORC复合物进行的DNA结合测定表明,ORC的DNA结合域需要六个ORC五个亚基中的五个的协同作用。蛋白质-DNA交联研究表明,起源序列的识别主要是由两组不同的ORC亚基介导的,它们与DNA的两个不同区域进行序列特异性接触。讨论了这些发现对ORC功能和真核DNA复制起始机制的影响。

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