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Parallel G-triplexes and G-hairpins as potential transitory ensembles in the folding of parallel-stranded DNA G-Quadruplexes

机译:平行的G-三重和G-发夹作为折叠平行链DNA G-quadrupleass中的潜在暂时的集合

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摘要

Guanine quadruplexes (G4s) are non-canonical nucleic acids structures common in important genomic regions. Parallel-stranded G4 folds are the most abundant, but their folding mechanism is not fully understood. Recent research highlighted that G4 DNA molecules fold via kinetic partitioning mechanism dominated by competition amongst diverse long-living G4 folds. The role of other intermediate species such as parallel G-triplexes and G-hairpins in the folding process has been a matter of debate. Here, we use standard and enhanced-sampling molecular dynamics simulations (total length of similar to 0.9 ms) to study these potential folding intermediates. We suggest that parallel G-triplex per se is rather an unstable species that is in local equilibrium with a broad ensemble of triplex-like structures. The equilibrium is shifted to well-structured G-triplex by stacked aromatic ligand and to a lesser extent by flanking duplexes or nucleotides. Next, we study propeller loop formation in GGGAGGGAGGG, GGGAGGGand GGGTTAGGG sequences. We identify multiple folding pathways from different unfolded and misfolded structures leading towards an ensemble of intermediates called cross-like structures (cross-hairpins), thus providing atomistic level of description of the single-molecule folding events. In summary, the parallel G-triplex is a possible, but not mandatory short-living (transitory) intermediate in the folding of parallel-stranded G4.
机译:鸟嘌呤四边形(G4s)是重要基因组区域中常见的非规范核酸结构。平行绞合的G4折叠是最丰富的,但它们的折叠机构不完全理解。最近的研究突出显示G4 DNA分子通过竞争主导的动力学分区机制折叠,在不同的长寿G4折叠中。在折叠过程中,其他中间物种如平行G-三重和G-发夹的作用是辩论的问题。在这里,我们使用标准和增强抽样的分子动力学模拟(类似于0.9毫秒的总长度),以研究这些潜在的折叠中间体。我们建议平行的G-Triplex本身是一种不稳定的物种,其在局部平衡中,具有宽的三重结构结构的宽集合。通过叠层双工或核苷酸通过堆叠的芳族配体与较小的程度转移到结构良好的G-Triplem。接下来,我们在GGGGGGGGGGGGGGGGG序列中研究螺旋桨循环形成。我们识别来自不同展开和错误折叠结构的多个折叠途径,所述结构导致称为杂种结构(交叉发夹)的中间体的集合,从而提供了单分子折叠事件的原始描述的原子。总之,并行G-Triplex是一种可能但不是强制性的短生活(暂时)中间的平行链状G4的折叠。

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  • 来源
    《Nucleic Acids Research》 |2019年第14期|共18页
  • 作者单位

    Czech Acad Sci Inst Biophys Vvi Kralovopolska 135 Brno 61265 Czech Republic;

    Palacky Univ Fac Sci Reg Ctr Adv Technol &

    Mat Slechtitelu 27 Olomouc 77146 Czech Republic;

    Masaryk Univ Cent European Inst Technol Kamenice 753-5 Brno 62500 Czech Republic;

    Czech Acad Sci Inst Biophys Vvi Kralovopolska 135 Brno 61265 Czech Republic;

    Czech Acad Sci Inst Biophys Vvi Kralovopolska 135 Brno 61265 Czech Republic;

    Czech Acad Sci Inst Biophys Vvi Kralovopolska 135 Brno 61265 Czech Republic;

    Czech Acad Sci Inst Biophys Vvi Kralovopolska 135 Brno 61265 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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