DnaA, ORC, and Cdc6: similarity beyond the domains of life and diversityThis paper is one of a selection of papers published in this special issue entitled 8th International Conference on AAA Proteins and has undergone the Journal's usual peer review process.

脱氧核糖核酸 原点识别复合体 微小染色体维持 解旋酶 生物 dnaB解旋酶 复制前复合体 DNA复制 复制的起源 细胞生物学 真核细胞DNA复制 染色体复制控制 DNA 生物化学 计算生物学 遗传学 核糖核酸 基因
作者
Hironori Kawakami,Tsutomu Katayama
出处
期刊:Biochemistry and Cell Biology [NRC Research Press]
卷期号:88 (1): 49-62 被引量:72
标识
DOI:10.1139/o09-154
摘要

To initiate chromosomal DNA replication, specific proteins bind to the replication origin region and form multimeric and dynamic complexes. Bacterial DnaA, the eukaryotic origin recognition complex (ORC), and Cdc6 proteins, most of which include an AAA+(-like) motif, play crucial roles in replication initiation. The importance of ATP binding and hydrolysis in these proteins has recently become recognized. ATP binding of Escherichia coli DnaA is required for the formation of the activated form of a DnaA multimer on the replication origin. The ATP-DnaA multimer can unwind duplex DNA in an origin-dependent manner, which is supported by various specific functions of several AAA+ motifs. DnaA-ATP hydrolysis is stimulated after initiation, repressing extra initiations, and sustaining once-per-cell cycle replication. ATP binding of ORC and Cdc6 in Saccharomyces cerevisiae is required for heteromultimeric complex formation and specific DNA binding. ATP hydrolysis of these proteins is important for the efficient loading of the minichromosome maintenance protein complex, a component of the putative replicative helicase. In this review, we discuss the roles of DnaA, ORC, and Cdc6 in replication initiation and its regulation. We also summarize the functional features of the AAA+ domains of these proteins, and the functional divergence of ORC in chromosomal dynamics.
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