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Effects of Central Loop Length and Metal Ions on the Thermal Stability of G-Quadruplexes

机译:中心环长度和金属离子对G-四链体热稳定性的影响

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摘要

The central loop of G-quadruplex molecular beacons is a key element to sense target DNA or RNA sequences. In this study, circular dichroism spectroscopy (CD), thermal difference spectrum (TDS), non-denatured non-denaturing gel electrophoresis, and thermal stability analysis were used to investigate the effect of the central loop length on G-quadruplex features. Two series of G-quadruplexes, AG3TTAG3-(TTA)n-G3TTAG3T (n = 1–8) (named TTA series) and AG3TTTG3-(TTA)n-G3TTTG3T (n = 1–8) (named TTT series) were examined in K+ and Na+ solutions, respectively. CD and TDS spectral data indicated that TTA series adopted an antiparallel G-quadruplex structure in Na+ solution and a hybrid G-quadruplex structure in K+ solution respectively. TTT series exhibited a hybrid G-quadruplex structure in both Na+ and K+ solutions. UV melting curves indicated that the stability of G-quadruplex in both series was reduced by the elongation of central loop. Thermal stability analysis concluded that the G-quadruplex destabilization with long central loop is an entropy-driven process due to more flexible and longer central loops.
机译:G-四链体分子信标的中央环是检测目标DNA或RNA序列的关键元件。在这项研究中,圆二色光谱(CD),热差谱(TDS),非变性非变性凝胶电泳和热稳定性分析用于研究中心环长度对G四链体特征的影响。研究了两个系列的G四联体AG3TTAG3-(TTA)n-G3TTAG3T(n = 1-8)(命名为TTA系列)和AG3TTTG3-(TTA)n-G3TTTG3T(n = 1-8)(命名为TTT系列)。分别在K + 和Na + 解决方案中。 CD和TDS光谱数据表明,TTA系列分别在Na + 溶液中采用反平行G-四链体结构和在K + 溶液中采用杂化G-四链体结构。 TTT系列在Na + 和K + 溶液中均表现出杂化G-四链体结构。 UV熔融曲线表明,两个系列中G-四链体的稳定性由于中心环的延长而降低。热稳定性分析得出的结论是,具有较长中央回路的G-四链体去稳定是一个熵驱动的过程,这是因为中央回路更灵活且更长。

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