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由d(TGGGGT)形成的G-四链体稳定性的压力依赖性

The Pressure Dependence of the Stability of the G-quadruplex Formed by d(TGGGGT).

作者信息

Tariq Nabeel, Kume Takuma, Feroze Ujala N, Macgregor Robert B

机构信息

Graduate Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto, Toronto, ON M5G1M2, Canada.

出版信息

Life (Basel). 2022 May 21;12(5):765. doi: 10.3390/life12050765.

Abstract

The G-quadruplex (GQ), a tetrahelix formed by guanine-rich nucleic acid sequences, is a potential drug target for several diseases. Monomolecular GQs are stabilized by guanine tetrads and non-guanine regions that form loops. Hydrostatic pressure destabilizes the folded, monomolecular GQ structures. In this communication, we present data on the effect of pressure on the conformational stability of the tetramolecular GQ, d[5'-TGGGGT-3']. This molecule does not have loops linking the tetrads; thus, its physical properties presumably reflect those of the tetrads alone. Understanding the properties of the tetrads will aid in understanding the contribution of the other structural components to the stability of GQ DNA. By measuring UV light absorption, we have studied the effect of hydrostatic pressure on the thermal stability of the tetramolecular d[5'-TGGGGT-3'] in the presence of sodium ions. Our data show that, unlike monomolecular GQ, the temperature at which d[5'-TGGGGT-3'] dissociates to form the constituent monomers is nearly independent of pressure up to 200 MPa. This implies that there is no net molar volume difference (∆) between the GQ and the unfolded random-coil states. This finding further suggests that the large negative ∆ values for the unfolding of monomolecular GQ are due to the presence of the loop regions in those structures.

摘要

G-四链体(GQ)是由富含鸟嘌呤的核酸序列形成的四螺旋结构,是多种疾病的潜在药物靶点。单分子GQ由鸟嘌呤四联和形成环的非鸟嘌呤区域稳定。静水压力会使折叠的单分子GQ结构不稳定。在本通讯中,我们展示了压力对四分子GQ d[5'-TGGGGT-3']构象稳定性影响的数据。该分子没有连接四联的环;因此,其物理性质可能仅反映四联的性质。了解四联的性质将有助于理解其他结构成分对GQ DNA稳定性的贡献。通过测量紫外光吸收,我们研究了在钠离子存在下静水压力对四分子d[5'-TGGGGT-3']热稳定性的影响。我们的数据表明,与单分子GQ不同,d[5'-TGGGGT-3']解离形成组成单体的温度在高达200 MPa的压力下几乎与压力无关。这意味着GQ与未折叠的无规卷曲状态之间没有净摩尔体积差(∆)。这一发现进一步表明,单分子GQ展开时的大负∆值是由于这些结构中存在环区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9461/9144232/d22c11c84682/life-12-00765-g001.jpg

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