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首页> 外文期刊>Nucleic Acids Research >The intrinsically disordered amino-terminal region of human RecQL4: multiple DNA-binding domains confer annealing, strand exchange and G4 DNA binding
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The intrinsically disordered amino-terminal region of human RecQL4: multiple DNA-binding domains confer annealing, strand exchange and G4 DNA binding

机译:人类RecQL4的内在无序的氨基末端区域:多个DNA结合域赋予退火,链交换和G4 DNA结合

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摘要

Human RecQL4 belongs to the ubiquitous RecQ helicase family. Its N-terminal region represents the only homologue of the essential DNA replication initiation factor Sld2 of Saccharomyces cere-visiae, and also participates in the vertebrate initiation of DNA replication. Here, we utilized a random screen to identify N-terminal fragments of human RecQL4 that could be stably expressed in and purified from Escherichia coli. Biophysical characterization of these fragments revealed that the Sld2 homologous RecQL4 N-terminal domain carries large intrinsically disordered regions. The N-terminal fragments were sufficient for the strong annealing activity of RecQL4. Moreover, this activity appeared to be the basis for an ATP-independent strand exchange activity. Both activities relied on multiple DNA-binding sites with affinities to single-stranded, double-stranded and Y-structured DNA. Finally, we found a remarkable affinity of the N-terminus for guanine quadruplex (G4) DNA, exceeding the affinities for other DNA structures by at least 60-fold. Together, these findings suggest that the DNA interactions mediated by the N-terminal region of human RecQL4 represent a central function at the replication fork. The presented data may also provide a mechanistic explanation for the role of elements with a G4-forming propensity identified in the vicinity of vertebrate origins of DNA replication.
机译:人RecQL4属于普遍存在的RecQ解旋酶家族。它的N端区域代表酿酒酵母的重要DNA复制起始因子Sld2的唯一同源物,并且还参与脊椎动物DNA复制的起始。在这里,我们利用随机筛选来鉴定人RecQL4的N端片段,该片段可以在大肠杆菌中稳定表达并从大肠杆菌中纯化。这些片段的生物物理特征表明,Sld2同源RecQL4 N末端结构域携带大的内在无序区域。 N末端片段足以实现RecQL4的强退火活性。而且,该活性似乎是不依赖ATP的链交换活性的基础。两种活性都依赖于与单链,双链和Y结构DNA亲和的多个DNA结合位点。最后,我们发现N末端对鸟嘌呤四链体(G4)DNA的亲和力超乎寻常,比其他DNA结构的亲和力至少高60倍。在一起,这些发现表明,人类RecQL4的N端区域介导的DNA相互作用代表了复制叉的核心功能。呈现的数据也可以为在复制的脊椎动物起源附近鉴定出具有G4形成倾向的元素的作用提供机械解释。

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