Lane Andrew N, Chaires J Brad, Gray Robert D, Trent John O
Structural Biology Program, JG Brown Cancer Center, University of Louisville, KY 40202, USA.
Nucleic Acids Res. 2008 Oct;36(17):5482-515. doi: 10.1093/nar/gkn517. Epub 2008 Aug 21.
In this review, we give an overview of recent literature on the structure and stability of unimolecular G-rich quadruplex structures that are relevant to drug design and for in vivo function. The unifying theme in this review is energetics. The thermodynamic stability of quadruplexes has not been studied in the same detail as DNA and RNA duplexes, and there are important differences in the balance of forces between these classes of folded oligonucleotides. We provide an overview of the principles of stability and where available the experimental data that report on these principles. Significant gaps in the literature have been identified, that should be filled by a systematic study of well-defined quadruplexes not only to provide the basic understanding of stability both for design purposes, but also as it relates to in vivo occurrence of quadruplexes. Techniques that are commonly applied to the determination of the structure, stability and folding are discussed in terms of information content and limitations. Quadruplex structures fold and unfold comparatively slowly, and DNA unwinding events associated with transcription and replication may be operating far from equilibrium. The kinetics of formation and resolution of quadruplexes, and methodologies are discussed in the context of stability and their possible biological occurrence.
在本综述中,我们概述了近期有关单分子富含鸟嘌呤的四链体结构的结构与稳定性的文献,这些结构与药物设计及体内功能相关。本综述的统一主题是能量学。四链体的热力学稳定性尚未像DNA和RNA双链体那样得到详细研究,并且在这些折叠寡核苷酸类别之间的力平衡方面存在重要差异。我们概述了稳定性原理以及现有报告这些原理的实验数据。已确定文献中存在重大空白,应通过对明确的四链体进行系统研究来填补,这不仅是为了在设计时提供对稳定性的基本理解,还因为它与四链体在体内的出现有关。从信息内容和局限性方面讨论了常用于确定结构、稳定性和折叠的技术。四链体结构的折叠和解折叠相对较慢,与转录和复制相关的DNA解旋事件可能在远离平衡的状态下发生。在稳定性及其可能的生物学出现的背景下讨论了四链体形成和分解的动力学以及方法。