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真核细胞中的DNA复制叉。

The DNA replication fork in eukaryotic cells.

作者信息

Waga S, Stillman B

机构信息

Cold Spring Harbor Laboratory, New York 11724, USA.

出版信息

Annu Rev Biochem. 1998;67:721-51. doi: 10.1146/annurev.biochem.67.1.721.

Abstract

Replication of the two template strands at eukaryotic cell DNA replication forks is a highly coordinated process that ensures accurate and efficient genome duplication. Biochemical studies, principally of plasmid DNAs containing the Simian Virus 40 origin of DNA replication, and yeast genetic studies have uncovered the fundamental mechanisms of replication fork progression. At least two different DNA polymerases, a single-stranded DNA-binding protein, a clamp-loading complex, and a polymerase clamp combine to replicate DNA. Okazaki fragment synthesis involves a DNA polymerase-switching mechanism, and maturation occurs by the recruitment of specific nucleases, a helicase, and a ligase. The process of DNA replication is also coupled to cell-cycle progression and to DNA repair to maintain genome integrity.

摘要

真核细胞DNA复制叉处两条模板链的复制是一个高度协调的过程,可确保准确、高效地进行基因组复制。主要针对含有猿猴病毒40 DNA复制起点的质粒DNA进行的生化研究以及酵母遗传学研究,揭示了复制叉前进的基本机制。至少两种不同的DNA聚合酶、一种单链DNA结合蛋白、一个钳位加载复合体和一个聚合酶钳位共同作用来复制DNA。冈崎片段的合成涉及DNA聚合酶切换机制,其成熟过程通过募集特定核酸酶、解旋酶和连接酶来实现。DNA复制过程还与细胞周期进程以及DNA修复相耦合,以维持基因组的完整性。

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