细胞周期中出芽酵母复制起点起始复合物的逐步组装。

J F Diffley, J H Cocker, S J Dowell, J Harwood, A Rowley
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引用次数: 43

摘要

DNA复制是细胞周期中的关键事件,因此在真核细胞中受到严格控制。DNA复制的开始取决于有丝分裂的完成和G(1)过程中完成细胞周期的承诺。启动DNA复制所需的蛋白质因子的特征对于理解细胞周期是如何调节的至关重要。最近的研究结果表明,起始复合物在细胞周期的多个阶段组装。首先,起始点与多亚单位起始点识别复合体(ORC)结合,这是体内DNA复制所必需的。ORC在每个复制起始点存在一个以上的完整复合体,在前一个细胞周期中,ORC在起始点后立即与起始点结合。ORC结合是通过识别包括基本ARS共识序列(ACS)和与ACS相邻的功能重要的B1元件的二部序列而发生的。在主动循环细胞中,一种新的复制前复合体(pre-RC)在有丝分裂结束时聚集在起点,并保持在起点直到DNA复制开始。最后,在G(1)末端周期性合成的Dbf4与复制起点相互作用。Dbf4-origin相互作用需要一个完整的ACS,这强烈表明相互作用是通过ORC发生的。Dbf4与Cdc7蛋白激酶相互作用,是激活Cdc7蛋白激酶所必需的,Dbf4和Cdc7一起是G(1)-S转化所必需的。Dbf4的单独区域需要Cdc7和起源相互作用,这表明Dbf4可能将Cdc7招募到复制起点,其中一些关键成分的磷酸化可能导致起源激活。
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Stepwise assembly of initiation complexes at budding yeast replication origins during the cell cycle.

DNA replication is a pivotal event in the cell cycle and, as a consequence, is tightly controlled in eukaryotic cells. The initiation of DNA replication is dependent upon the completion of mitosis and upon the commitment to complete the cell cycle made during G(1). Characterisation of the protein factors required for initiating DNA replication is essential to understand how the cell cycle is regulated. Recent results indicate that initiation complexes assemble in multiple stages during the cell cycle. First, origins are bound by the multisubunit origin recognition complex (ORC) which is essential for DNA replication in vivo. ORC, present at little more than one complete complex per replication origin, binds to origins immediately after initiation in the previous cell cycle. ORC binding occurs by the recognition of a bipartite sequence that includes the essential ARS consensus sequence (ACS) and the functionally important B1 element adjacent to the ACS. A novel pre-replicative complex (pre-RC) assembles at origins at the end of mitosis in actively cycling cells and remains at origins until DNA replication initiates. Finally, Dbf4, which is periodically synthesised at the end of G(1), interacts with replication origins. Dbf4-origin interaction requires an intact ACS strongly suggesting that interaction occurs through ORC. Dbf4 interacts with and is required for the activation of the Cdc7 protein kinase and together, Dbf4 and Cdc7 are required for the G(1)-S transition. Separate regions of Dbf4 are required for Cdc7- and origin-interaction suggesting that Dbf4 may act to recruit Cdc7 to replication origins where phosphorylation of some key component may cause origin firing.

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Studies of DNA methylation in animals. Characterization of the execution phase of apoptosis in vitro using extracts from condemned-phase cells. Analysis of the temporal program of replication initiation in yeast chromosomes. On the structure of replication and transcription factories. Stepwise assembly of initiation complexes at budding yeast replication origins during the cell cycle.
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