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核酸杂交:三链体稳定性与能量学

Nucleic acid hybridization: triplex stability and energetics.

作者信息

Plum G E, Pilch D S, Singleton S F, Breslauer K J

机构信息

Department of Chemistry, Rutgers, State University of New Jersey, Piscataway 08855-0939, USA.

出版信息

Annu Rev Biophys Biomol Struct. 1995;24:319-50. doi: 10.1146/annurev.bb.24.060195.001535.

Abstract

In this chapter, we review the current state of the thermodynamic database for triple helical oligonucleotide hybridization reactions and present a critical assessment of the methods used to obtain the relevant data. The thermodynamic stability of triple-helix oligonucleotide constructs is discussed in terms of its dependence on temperature, chain length, pH, salt, base sequence, base and backbone modifications, and ligand binding. In particular, we examine the coupling of hybridization equilibria to proton, cation, and drug-binding equilibria. Throughout the chapter, we emphasize that a detailed understanding of the endogenous and exogenous variables that control triplex stability is required for the rational design of oligonucleotides for specific therapeutic, diagnostic, and/or biotechnological applications, as well as for elucidating the potential cellular roles of these higher-order nucleic acid complexes.

摘要

在本章中,我们回顾了三螺旋寡核苷酸杂交反应热力学数据库的现状,并对用于获取相关数据的方法进行了批判性评估。从三螺旋寡核苷酸构建体对温度、链长、pH值、盐、碱基序列、碱基和主链修饰以及配体结合的依赖性方面,讨论了其热力学稳定性。特别是,我们研究了杂交平衡与质子、阳离子和药物结合平衡的耦合。在整章中,我们强调,为了合理设计用于特定治疗、诊断和/或生物技术应用的寡核苷酸,以及阐明这些高阶核酸复合物在细胞中的潜在作用,需要详细了解控制三链体稳定性的内源性和外源性变量。

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