Bruylants Gilles, Boccongelli Marina, Snoussi Karim, Bartik Kristin
Molecular and Biomolecular Engineering, Service Matières et Matériaux, CP165/64, Université Libre de Bruxelles, 50 Avenue F.D. Roosevelt, 1050 Bruxelles, Belgium.
Biochemistry. 2009 Sep 8;48(35):8473-82. doi: 10.1021/bi900615z.
Locked nucleic acids (LNA), conformationally restricted nucleotide analogues, are known to enhance pairing stability and selectivity toward complementary strands. With the aim to contribute to a better understanding of the origin of these effects, the structure, thermal stability, hybridization thermodynamics, and base-pair dynamics of a full-LNA:DNA heteroduplex and of its isosequential DNA:DNA homoduplex were monitored and compared. CD measurements highlight differences in the duplex structures: the homoduplex and heteroduplex present B-type and A-type helical conformations, respectively. The pairing of the hybrid duplex is characterized, at all temperatures monitored (between 15 and 37 degrees C), by a larger stability constant but a less favorable enthalpic term. A major contribution to this thermodynamic profile emanates from the presence of a hairpin structure in the LNA single strand which contributes favorably to the entropy of interaction but leads to an enthalpy penalty upon duplex formation. The base-pair opening dynamics of both systems was monitored by NMR spectroscopy via imino protons exchange measurements. The measurements highlight that hybrid G-C base-pairs present a longer base-pair lifetime and higher stability than natural G-C base-pairs, but that an LNA substitution in an A-T base-pair does not have a favorable effect on the stability. The thermodynamic and dynamic data confirm a more favorable stacking of the bases in the hybrid duplex. This study emphasizes the complementarities between dynamic and thermodynamical studies for the elucidation of the relevant factors in binding events.
锁核酸(LNA)是构象受限的核苷酸类似物,已知其能增强与互补链的配对稳定性和选择性。为了有助于更好地理解这些效应的起源,对全LNA:DNA异源双链体及其等序列DNA:DNA同源双链体的结构、热稳定性、杂交热力学和碱基对动力学进行了监测和比较。圆二色性(CD)测量突出了双链体结构的差异:同源双链体和异源双链体分别呈现B型和A型螺旋构象。在所有监测温度(15至37摄氏度之间)下,杂交双链体的配对特征是具有更大的稳定性常数,但焓项不太有利。这种热力学特征的主要贡献来自LNA单链中存在的发夹结构,它对相互作用的熵有有利贡献,但在双链体形成时会导致焓罚。通过核磁共振(NMR)光谱法通过亚氨基质子交换测量监测了两个系统的碱基对打开动力学。测量结果突出表明,杂交G-C碱基对比天然G-C碱基对具有更长的碱基对寿命和更高的稳定性,但A-T碱基对中的LNA取代对稳定性没有有利影响。热力学和动力学数据证实了杂交双链体中碱基更有利的堆积。这项研究强调了动态和热力学研究在阐明结合事件相关因素方面的互补性。