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真核生物 DNA 复制的滞后链起始过程——由多蛋白复合物控制的高度协调反应链。

Lagging Strand Initiation Processes in DNA Replication of Eukaryotes-Strings of Highly Coordinated Reactions Governed by Multiprotein Complexes.

机构信息

Centre for Chromosome Biology, Arts & Science Building, Main Concourse, School of Biological and Chemical Sciences, Biochemistry, University of Galway, Distillery Road, H91 TK33 Galway, Ireland.

出版信息

Genes (Basel). 2023 Apr 29;14(5):1012. doi: 10.3390/genes14051012.

Abstract

In their influential reviews, Hanahan and Weinberg coined the term 'Hallmarks of Cancer' and described genome instability as a property of cells enabling cancer development. Accurate DNA replication of genomes is central to diminishing genome instability. Here, the understanding of the initiation of DNA synthesis in origins of DNA replication to start leading strand synthesis and the initiation of Okazaki fragment on the lagging strand are crucial to control genome instability. Recent findings have provided new insights into the mechanism of the remodelling of the prime initiation enzyme, DNA polymerase α-primase (Pol-prim), during primer synthesis, how the enzyme complex achieves lagging strand synthesis, and how it is linked to replication forks to achieve optimal initiation of Okazaki fragments. Moreover, the central roles of RNA primer synthesis by Pol-prim in multiple genome stability pathways such as replication fork restart and protection of DNA against degradation by exonucleases during double-strand break repair are discussed.

摘要

在他们有影响力的综述中,Hanahan 和 Weinberg 创造了“癌症的标志”一词,并将基因组不稳定性描述为使癌症发展的细胞特性。准确复制基因组是减少基因组不稳定性的核心。在这里,理解 DNA 复制起点处 DNA 合成的起始,以启动领头链合成,以及滞后链上冈崎片段的起始,对于控制基因组不稳定性至关重要。最近的发现为原初起始酶 DNA 聚合酶α-引发酶(Pol-prim)在引物合成过程中的构象重排机制、酶复合物如何实现滞后链合成以及如何与复制叉连接以实现冈崎片段的最佳起始提供了新的见解。此外,还讨论了 Pol-prim 合成 RNA 引物在多种基因组稳定性途径中的核心作用,如复制叉的重新启动以及在双链断裂修复过程中保护 DNA 免受核酸外切酶降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a27/10218536/711cc599b14b/genes-14-01012-g001.jpg

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