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高等真核端粒四链体的结构与稳定性。

Structure and stability of higher-order human telomeric quadruplexes.

机构信息

Dipartimento di Chimica P. Corradini, University of Naples Federico II, 80122 Naples, Italy.

出版信息

J Am Chem Soc. 2011 Dec 28;133(51):20951-61. doi: 10.1021/ja209192a. Epub 2011 Dec 1.

Abstract

G-quadruplex formation in the sequences 5'-(TTAGGG)(n) and 5'(TTAGGG)(n)TT (n = 4, 8, 12) was studied using circular dichroism, sedimentation velocity, differential scanning calorimetry, and molecular dynamics simulations. Sequences containing 8 and 12 repeats formed higher-order structures with two and three contiguous quadruplexes, respectively. Plausible structures for these sequences were determined by molecular dynamics simulations followed by experimental testing of predicted hydrodynamic properties by sedimentation velocity. These structures featured folding of the strand into contiguous quadruplexes with mixed hybrid conformations. Thermodynamic studies showed the strands folded spontaneous to contain the maximum number contiguous quadruplexes. For the sequence 5'(TTAGGG)(12)TT, more than 90% of the strands contained completely folded structures with three quadruplexes. Statistical mechanical-based deconvolution of thermograms for three quadruplex structures showed that each quadruplex melted independently with unique thermodynamic parmameters. Thermodynamic analysis revealed further that quadruplexes in higher-ordered structures were destabilized relative to their monomeric counterparts, with unfavorable coupling free energies. Quadruplex stability thus depends critically on the sequence and structural context.

摘要

使用圆二色性、沉降速度、差示扫描量热法和分子动力学模拟研究了序列 5'-(TTAGGG)(n)和 5'(TTAGGG)(n)TT(n=4、8、12)中的 G-四链体形成。含有 8 和 12 个重复的序列分别形成了具有两个和三个连续四链体的高级结构。通过分子动力学模拟确定了这些序列的合理结构,然后通过沉降速度实验测试预测的流体力学性质来验证。这些结构的特征是将链折叠成具有混合杂交构象的连续四链体。热力学研究表明,这些链自发折叠以包含最大数量的连续四链体。对于序列 5'(TTAGGG)(12)TT,超过 90%的链包含完全折叠的结构,其中有三个四链体。对三个四链体结构的热图进行基于统计力学的解卷积表明,每个四链体都独立地熔化,具有独特的热力学参数。热力学分析进一步表明,高阶结构中的四链体相对于其单体对应物不稳定,具有不利的耦合自由能。因此,四链体的稳定性取决于序列和结构环境。

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