Stability of guanine-quadruplexes as sensing elements investigated using solvation free energy

Nadia Norhakim, Gohvinath Sandrasagran, H. F. Hawari, Z. Arif Burhanudin
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Abstract

A guanine-quadruplex (G4) is a stack of guanine tetrads. Its structure varies significantly with the length of the guanine-rich DNA strand and the nature of the aqueous solution that surrounds it. It is an attractive candidate for sensing element in ion sensor applications due to its high specificity of binding to metal ions. A robust ion sensor, however, requires a stable G4 structure. Hence, in this work, the stability of several G4 structures is investigated by calculating the structure’s free energy at several different ionic concentrations and temperatures. It is found that the most extended sequences of the G4 destabilize at low ions concentration and high solution temperatures. The results also indicate that the G4 used in this work retains its structure at a high ions concentration. The knowledge on G4 stability could help to develop ways to preserve G4 DNA which is necessary to ensure its reactivity in sensing applications.
用溶剂自由能研究鸟嘌呤四聚物作为传感元件的稳定性
鸟嘌呤四聚体(G4)是一堆鸟嘌呤四聚体。它的结构随着富含鸟嘌呤的DNA链的长度和围绕它的水溶液的性质而发生显著变化。由于其与金属离子结合的高特异性,它是离子传感器应用中有吸引力的传感元件候选。然而,坚固的离子传感器需要稳定的G4结构。因此,在这项工作中,通过计算几种不同离子浓度和温度下结构的自由能来研究几种G4结构的稳定性。发现G4的大部分延伸序列在低离子浓度和高溶液温度下不稳定。结果还表明,本研究中使用的G4在高离子浓度下仍能保持其结构。对G4稳定性的了解有助于开发保存G4 DNA的方法,这是确保其在传感应用中的反应性所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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