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Dna2 内切核酸酶/解旋酶的 N 端 45kDa 结构域将酶靶向到二级结构 DNA。

The N-terminal 45-kDa domain of Dna2 endonuclease/helicase targets the enzyme to secondary structure DNA.

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon, Korea.

出版信息

J Biol Chem. 2013 Mar 29;288(13):9468-81. doi: 10.1074/jbc.M112.418715. Epub 2013 Jan 22.

Abstract

The removal of initiating primers from the 5'-ends of each Okazaki fragment, required for the generation of contiguous daughter strands, can be catalyzed by the combined action of DNA polymerase δ and Fen1. When the flaps generated by displacement of DNA synthesis activity of polymerase δ become long enough to bind replication protein A or form hairpin structures, the helicase/endonuclease enzyme, Dna2, becomes critical because of its ability to remove replication protein A-coated or secondary structure flaps. In this study, we show that the N-terminal 45-kDa domain of Dna2 binds hairpin structures, allowing the enzyme to target secondary structure flap DNA. We found that this activity was essential for the efficient removal of hairpin flaps by the endonuclease activity of Dna2 with the aid of its helicase activity. Thus, the efficient removal of hairpin structure flaps requires the coordinated action of all three functional domains of Dna2. We also found that deletion of the N-terminal 45-kDa domain of Dna2 led to a partial loss of the intra-S-phase checkpoint function and an increased rate of homologous recombination in yeast. We discuss the potential roles of the N-terminal domain of Dna2 in the maintenance of genomic stability.

摘要

冈崎片段 5'-端起始引物的去除对于连续子链的生成是必需的,这一过程可以由 DNA 聚合酶 δ 和 Fen1 的联合作用来催化。当由 DNA 聚合酶 δ 的合成活性引发的 DNA 链置换所产生的 flap 足够长以结合复制蛋白 A 或形成发夹结构时,解旋酶/内切酶酶 Dna2 由于其能够去除复制蛋白 A 覆盖的或二级结构 flap 的能力而变得至关重要。在本研究中,我们表明 Dna2 的 N 端 45kDa 结构域与发夹结构结合,从而使酶能够靶向二级结构 flap DNA。我们发现,这种活性对于 Dna2 的内切酶活性有效地去除发夹 flap 是必不可少的,其解旋酶活性在此过程中提供了辅助。因此,发夹结构 flap 的有效去除需要 Dna2 的所有三个功能域的协调作用。我们还发现,Dna2 的 N 端 45kDa 结构域缺失会导致酵母细胞内 S 期检验点功能部分丧失和同源重组率增加。我们讨论了 Dna2 的 N 端结构域在维持基因组稳定性方面的潜在作用。

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