氨基糖苷对三螺旋核酸的识别。

H Xi, D P Arya
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引用次数: 17

摘要

氨基糖苷是一类新型的三螺旋核酸稳定配体,是传统的RNA结合物。在所有氨基糖苷中,新霉素在稳定DNA、RNA和杂交三螺旋结构方面的作用最为显著。在大多数情况下,与较小的凹槽粘合剂或嵌入剂相比,新霉素在三螺旋稳定方面表现优异。分子模型研究表明,新霉素可以进入更大的沃森-胡斯汀沟。电荷和形状互补是新霉素三元体识别的关键因素。通过将新霉素与插入剂如BQQ(一种有效的三螺旋插入剂)偶联,我们已经在开发更有效的三螺旋稳定配体方面取得了进展。这种双重甚至三重识别配体的设计为三螺旋核酸的识别开辟了新的范式。本文介绍了新霉素作为第一个选择性稳定核酸三联体结构的分子的研究。我们最近的发现支持了这些研究,即新霉素更倾向于与a类构象结合,其中三螺旋结构显示出一些特征。这些发现将有助于开发一系列新的三联体特异性配体,并可能有助于反义或抗原治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recognition of triple helical nucleic acids by aminoglycosides.

Aminoglycosides, traditional RNA binders, were found to be a new class of triple helical nucleic acid-stabilizing ligands. Neomycin, of all the aminoglycosides, has shown the most significant effects in stabilizing DNA, RNA, and hybrid triple helices. When compared with minor groove binders or intercalators, neomycin excels at triple helical stabilization in most cases. Molecular modeling studies suggest that neomycin reaches into the larger Watson-Hoogsteen groove. The charge and shape complementarity are the key factors in neomycin-triplex recognition. By conjugating neomycin with intercalators such as BQQ (a potent triple helix intercalating agent designed by Hélène), we have progressed in developing more potent triple helix stabilizing ligands. The design of such dual or even triple recognition ligands opens a new paradigm for recognition of triple helix nucleic acids. The article herein presents studies of neomycin as the first molecule that can selectively stabilize nucleic acid triplex structures. These studies are supported by our recent discovery that neomycin prefers to bind to A-like conformations, of which triple helix structures are known to display some characteristics. These findings will contribute to the development of a new series of triplex-specific ligands, and may contribute to either antisense or antigene therapies.

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