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含2'-脱氧-2'-氟-D-阿拉伯糖和2'-脱氧-2'-氟-D-核糖的寡核苷酸的双链识别。三链螺旋复合物稳定中分子间2'-OH-磷酸接触与糖折叠的关系。

Duplex recognition by oligonucleotides containing 2'-deoxy-2'-fluoro-D-arabinose and 2'-deoxy-2'-fluoro-D-ribose. Intermolecular 2'-OH-phosphate contacts versus sugar puckering in the stabilization of triple-helical complexes.

作者信息

Wilds C J, Damha M J

机构信息

Department of Chemistry, Otto Maass Chemistry Building, McGill University, 801 Sherbrooke Street West, Montreal, Quebec, Canada H3A 2K6.

出版信息

Bioconjug Chem. 1999 Mar-Apr;10(2):299-305. doi: 10.1021/bc9801171.

Abstract

To gain insight into the origins of the large binding affinity of RNA toward target duplexes, 2'-deoxy-2'-fluororibonucleic acid (2'F-RNA) and 2'-deoxy-2'-fluoroarabinonucleic acid (2'F-ANA) were tested for their ability to recognize duplex DNA, duplex RNA, and RNA-DNA hybrids. 2'F-RNA, 2'F-ANA, and the corresponding control single-stranded (ss) DNA strands were shown to form triple-helical complexes only with duplex DNA and hybrid DNA (Pu)-RNA (Py), but not with duplex RNA and hybrid RNA (Pu)-DNA (Py). In contrast, an RNA third strand recognized all four possible duplexes (DD, DR, RD, and RR) as previously demonstrated by Roberts and Crothers [(1992) Science 258, 1463-1466]. The 2'F-RNA (C3'-endo) strand exhibited significantly reduced affinity for duplexes compared to an unmodified RNA (C3'-endo) strand. These findings are consistent with the intermolecular 2'-OH-phosphate contact mechanism proposed by Escudé et al. [(1993) Nucleic Acids Res. 24, 5547-5553], as a ribo 2'-F atom should not interact with a negatively charged phosphate. In addition, they emphasize the role of the 2'-OH ribose as a general recognition and binding determinant of RNA. The 2'-F arabino modification (2'F-ANA, C2'-endo) led to a considerable increase in the binding affinity for duplex DNA, as compared to those of DNA and 2'F-RNA third strands. This is likely to be the result of a greater population of C2'-endo pucker of the 2'F-ANA compared to DNA. The enhancement observed for 2'F-ANA strands toward duplex DNA is comparable to that observed with 2'-OMe RNA. Since 2'F-ANA has been shown to be more resistant to nuclease degradation than DNA, these results are likely to stimulate experimental work on arabinose derivatives in laboratories concerned with targeting DNA sequences in vivo ("antigene" strategy).

摘要

为深入了解RNA对靶双链体具有高结合亲和力的起源,对2'-脱氧-2'-氟核糖核酸(2'F-RNA)和2'-脱氧-2'-氟阿拉伯核糖核酸(2'F-ANA)识别双链DNA、双链RNA和RNA-DNA杂交体的能力进行了测试。结果表明,2'F-RNA、2'F-ANA以及相应的对照单链(ss)DNA链仅与双链DNA和杂交DNA(嘌呤)-RNA(嘧啶)形成三螺旋复合物,而不与双链RNA和杂交RNA(嘌呤)-DNA(嘧啶)形成复合物。相比之下,如Roberts和Crothers先前证明的[(1992) Science 258, 1463 - 1466],RNA第三链能识别所有四种可能的双链体(双链DNA、RNA-DNA杂交体、DNA-RNA杂交体和双链RNA)。与未修饰的RNA(C3'-内向)链相比,2'F-RNA(C3'-内向)链对双链体的亲和力显著降低。这些发现与Escudé等人提出的分子间2'-OH-磷酸接触机制[(1993) Nucleic Acids Res. 24, 5547 - 5553]一致,因为核糖2'-F原子不应与带负电荷的磷酸相互作用。此外,这些发现强调了2'-OH核糖作为RNA一般识别和结合决定因素的作用。与DNA和2'F-RNA第三链相比,2'-F阿拉伯糖修饰(2'F-ANA,C2'-内向)使对双链DNA的结合亲和力显著增加。这可能是由于2'F-ANA的C2'-内向构象比DNA更多。观察到的2'F-ANA链对双链DNA的亲和力增强与2'-O-甲基RNA相当。由于已证明2'F-ANA比DNA更耐核酸酶降解,这些结果可能会刺激关注体内靶向DNA序列的实验室对阿拉伯糖衍生物进行实验研究(“反基因”策略)。

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