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抑制连续的人类端粒 G-四链体的完全折叠。

Inhibited complete folding of consecutive human telomeric G-quadruplexes.

机构信息

Interdisciplinary Nanoscience Center (iNANO), Aarhus University, Gustav Wieds Vej 14, 8000 Aarhus, Denmark.

Department of Chemistry, Aarhus University, Langelandsgade 140, 8000 Aarhus, Denmark.

出版信息

Nucleic Acids Res. 2023 Feb 28;51(4):1571-1582. doi: 10.1093/nar/gkad004.

Abstract

Noncanonical DNA structures, termed G-quadruplexes, are present in human genomic DNA and are important elements in many DNA metabolic processes. Multiple sites in the human genome have G-rich DNA stretches able to support formation of several consecutive G-quadruplexes. One of those sites is the telomeric overhang region that has multiple repeats of TTAGGG and is tightly associated with both cancer and aging. We investigated the folding of consecutive G-quadruplexes in both potassium- and sodium-containing solutions using single-molecule FRET spectroscopy, circular dichroism, thermal melting and molecular dynamics simulations. Our observations show coexistence of partially and fully folded DNA, the latter consisting of consecutive G-quadruplexes. Following the folding process over hours in sodium-containing buffers revealed fast G-quadruplex folding but slow establishment of thermodynamic equilibrium. We find that full consecutive G-quadruplex formation is inhibited by the many DNA structures randomly nucleating on the DNA, some of which are off-path conformations that need to unfold to allow full folding. Our study allows describing consecutive G-quadruplex formation in both nonequilibrium and equilibrium conditions by a unified picture, where, due to the many possible DNA conformations, full folding with consecutive G-quadruplexes as beads on a string is not necessarily achieved.

摘要

非经典 DNA 结构,称为 G-四链体,存在于人类基因组 DNA 中,是许多 DNA 代谢过程中的重要元素。人类基因组中的多个位点具有富含 G 的 DNA 链段,能够支持形成几个连续的 G-四链体。其中一个位点是端粒悬垂区域,它有多个 TTAGGG 重复序列,与癌症和衰老密切相关。我们使用单分子 FRET 光谱、圆二色性、热融解和分子动力学模拟研究了在含有钾和钠的溶液中连续 G-四链体的折叠。我们的观察结果表明,部分和完全折叠的 DNA 共存,后者由连续的 G-四链体组成。在含钠缓冲液中观察数小时的折叠过程显示出快速的 G-四链体折叠,但热力学平衡的建立缓慢。我们发现,由于许多 DNA 结构随机在 DNA 上引发,其中一些是偏离路径的构象,需要展开才能允许完全折叠,因此连续 G-四链体的完全形成受到抑制。我们的研究通过统一的图像描述了非平衡和平衡条件下连续 G-四链体的形成,由于存在许多可能的 DNA 构象,因此不一定能实现连续 G-四链体作为串珠的完全折叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/727a/9976873/f5da3fa4a775/gkad004fig1.jpg

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