Department of Physics and Chemistry, Nucleic Acid Center, University of Southern Denmark, DK-5230 Odense M, Denmark.
Nucleic Acids Res. 2010 Oct;38(19):6697-706. doi: 10.1093/nar/gkq561. Epub 2010 Jun 18.
Thermodynamics provides insights into the influence of modified nucleotide residues on stability of nucleic acids and is crucial for designing duplexes with given properties. In this article, we introduce detailed thermodynamic analysis of RNA duplexes modified with unlocked nucleic acid (UNA) nucleotide residues. We investigate UNA single substitutions as well as model mismatch and dangling end effects. UNA residues placed in a central position makes RNA duplex structure less favourable by 4.0-6.6 kcal/mol. Slight destabilization, by ∼0.5-1.5 kcal/mol, is observed for 5'- or 3'-terminal UNA residues. Furthermore, thermodynamic effects caused by UNA residues are extremely additive with ΔG°(37) conformity up to 98%. Direct mismatches involving UNA residues decrease the thermodynamic stability less than unmodified mismatches in RNA duplexes. Additionally, the presence of UNA residues adjacent to unpaired RNA residues reduces mismatch discrimination. Thermodynamic analysis of UNA 5'- and 3'-dangling ends revealed that stacking interactions of UNA residues are always less favourable than that of RNA residues. Finally, circular dichroism spectra imply no changes in overall A-form structure of UNA-RNA/RNA duplexes relative to the unmodified RNA duplexes.
热力学为研究修饰核苷酸残基对核酸稳定性的影响提供了深入的见解,对于设计具有特定性质的双链体至关重要。在本文中,我们介绍了对带有锁核酸(UNA)核苷酸残基修饰的 RNA 双链体的详细热力学分析。我们研究了 UNA 单取代以及模型错配和悬垂末端效应。UNA 残基位于中心位置会使 RNA 双链体结构的稳定性降低 4.0-6.6 kcal/mol。在 5' 或 3' 末端的 UNA 残基只会观察到轻微的去稳定化,约为 0.5-1.5 kcal/mol。此外,UNA 残基引起的热力学效应与 ΔG°(37) 一致性极高,可达 98%。直接涉及 UNA 残基的错配会降低 RNA 双链体的热力学稳定性,但其降低程度小于未修饰的错配。此外,UNA 残基紧邻未配对的 RNA 残基的存在会降低错配的区分度。UNA 5' 和 3' 悬垂末端的热力学分析表明,UNA 残基的堆积相互作用总是不如 RNA 残基有利。最后,圆二色光谱表明,UNA-RNA/RNA 双链体的整体 A 型结构与未修饰的 RNA 双链体相比没有变化。