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涉及二聚体G-四链体及其富含C的互补链的结构竞争的解析。

Resolution of a structural competition involving dimeric G-quadruplex and its C-rich complementary strand.

作者信息

Jaumot Joaquim, Eritja Ramon, Tauler Romà, Gargallo Raimundo

机构信息

Department of Analytical Chemistry, University of Barcelona Diagonal, 647, Barcelona, E-08028 Spain.

出版信息

Nucleic Acids Res. 2006 Jan 5;34(1):206-16. doi: 10.1093/nar/gkj421. Print 2006.

Abstract

The resolution of the dimeric intermolecular G-quadruplex/duplex competition of the telomeric DNA sequence 5'-TAG GGT TAG GGT-3' and of its complementary 5' ACC CTA ACC CTA-3' is reported. To achieve this goal, melting experiments of both sequences and of the mixtures of these sequences were monitored by molecular absorption, molecular fluorescence and circular dichroism spectroscopies. Molecular fluorescence measurements were carried out using molecular beacons technology, in which the 5'-TAG GGT TAG GGT-3' sequence was labelled with a fluorophore and a quencher at the ends of the strand. Mathematical analysis of experimental spectroscopic data was performed by means of multivariate curve resolution, allowing the calculation of concentration profiles and pure spectra of all resolved structures (dimeric antiparallel and parallel G-quadruplexes, Watson-Crick duplex and single strands) present in solution. Our results show that parallel G-quadruplex is more stable than antiparallel G-quadruplex. When the complementary C-rich strand is present, a mixture of both G-quadruplex structures and Watson-Crick duplex is observed, the duplex being the major species. In addition to melting temperatures, equilibrium constants for the parallel/antiparallel G-quadruplex equilibrium and for the G-quadruplex/duplex equilibrium were determined from the concentration profiles.

摘要

本文报道了端粒DNA序列5'-TAG GGT TAG GGT-3'及其互补序列5' ACC CTA ACC CTA-3'的二聚体分子间G-四链体/双链体竞争的解析。为实现这一目标,通过分子吸收光谱、分子荧光光谱和圆二色光谱监测了这两个序列及其混合物的熔解实验。分子荧光测量采用分子信标技术进行,其中5'-TAG GGT TAG GGT-3'序列在链的末端用荧光团和猝灭剂标记。通过多元曲线分辨对实验光谱数据进行数学分析,从而计算出溶液中所有解析结构(二聚体反平行和平行G-四链体、沃森-克里克双链体和单链)的浓度分布和纯光谱。我们的结果表明,平行G-四链体比反平行G-四链体更稳定。当存在富含C的互补链时,会观察到G-四链体结构和沃森-克里克双链体的混合物,其中双链体是主要成分。除了熔解温度外,还从浓度分布中确定了平行/反平行G-四链体平衡以及G-四链体/双链体平衡的平衡常数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa77/1325204/d9b0c59658f5/gkj421s1.jpg

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