Kaur Harleen, Wengel Jesper, Maiti Souvik
Institute of Genomics and Integrative Biology, CSIR, Mall Road, Delhi 110 007, India.
Biochem Biophys Res Commun. 2007 Jan 5;352(1):118-22. doi: 10.1016/j.bbrc.2006.10.155. Epub 2006 Nov 7.
Sequence-specific hybridization of antisense and antigene agent to the target nucleic acid is an important therapeutic strategy to modulate gene expression. However, efficiency of such agents falls due to inherent intramolecular-secondary-structures present in the target that pose competition to intermolecular hybridization by complementary antisense/antigene agent. Performance of these agents can be improved by employing structurally modified complementary oligonucleotides that efficiently hybridize to the target and force it to transit from an intramolecular-structured-state to an intermolecular-duplex state. In this study, the potential of variably substituted locked nucleic acid-modified oligonucleotides (8mer) to hybridize and disrupt highly stable, secondary structure of nucleic acid has been biophysically characterized and compared with the conventionally used unmodified DNA oligonucleotides. The target here is a stem-loop hairpin oligonucleotide-a structure commonly present in most structured-nucleic acids and known to exhibit an array of biological functions. Using fluorescence-based studies and EMSA we prove that LNA-modified oligonucleotides hybridize to the target hairpin with higher binding affinity even at lower concentration and subsequently, force it to assume a duplex conformation. LNA-modified oligonucleotides may thus, prove as potential therapeutic candidates to manipulate gene expression by disruption of biologically relevant nucleic acid secondary structure.
反义及反基因药物与靶核酸的序列特异性杂交是调控基因表达的重要治疗策略。然而,此类药物的效率会因靶核酸中固有的分子内二级结构而降低,这些结构会与互补的反义/反基因药物的分子间杂交形成竞争。通过使用结构修饰的互补寡核苷酸可以提高这些药物的性能,这些寡核苷酸能有效地与靶核酸杂交,并促使其从分子内结构状态转变为分子间双链状态。在本研究中,对可变取代的锁核酸修饰寡核苷酸(8聚体)与核酸高度稳定二级结构杂交并破坏其结构的潜力进行了生物物理表征,并与传统使用的未修饰DNA寡核苷酸进行了比较。这里的靶标是一个茎环发夹寡核苷酸——一种常见于大多数结构化核酸中的结构,已知具有一系列生物学功能。通过基于荧光的研究和电泳迁移率变动分析,我们证明了锁核酸修饰的寡核苷酸即使在较低浓度下也能以更高的结合亲和力与靶标发夹杂交,并随后促使其呈现双链构象。因此,锁核酸修饰的寡核苷酸可能被证明是通过破坏生物学相关核酸二级结构来操纵基因表达的潜在治疗候选物。