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A bridged nucleic acid, 2′,4′-BNACOC: synthesis of fully modified oligonucleotides bearing thymine, 5-methylcytosine, adenine and guanine 2′,4′-BNACOC monomers and RNA-selective nucleic-acid recognition

机译:桥接核酸2',4'-BNACOC:带有胸腺嘧啶,5-甲基胞嘧啶,腺嘌呤和鸟嘌呤2',4'-BNACOC单体的完全修饰寡核苷酸的合成和RNA选择性核酸识别

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摘要

Recently, we synthesized pyrimidine derivatives of the 2′-O,4′-C-methylenoxymethylene-bridged nucleic-acid (2′,4′-BNACOC) monomer, the sugar conformation of which is restricted in N-type conformation by a seven-membered bridged structure. Oligonucleotides (BNACOC) containing this monomer show high affinity with complementary single-stranded RNA and significant resistance to nuclease degradation. Here, BNACOC consisting of 2′,4′-BNACOC monomers bearing all four bases, namely thymine, 5-methylcytosine, adenine and guanine was efficiently synthesized and properties of duplexes containing the 2′,4′-BNACOC monomers were investigated by UV melting experiments and circular dichroism (CD) spectroscopy. The UV melting curve analyses showed that the BNACOC/BNACOC duplex possessed excellent thermal stability and that the BNACOC increased thermal stability with a complementary RNA strand. On the other hand, BNACOC/DNA heteroduplexes showed almost the same thermal stability as RNA/DNA heteroduplexes. Furthermore, mismatched sequence studies showed that BNACOC generally improved the sequence selectivity with Watson–Crick base-pairing compared to the corresponding natural DNA and RNA. A CD spectroscopic analysis indicated that the BNACOC formed duplexes with complementary DNA and RNA in a manner similar to natural RNA.
机译:最近,我们合成了2'-O,4'-C-亚甲基氧亚甲基桥接的核酸(2',4'-BNACOC)单体的嘧啶衍生物,其糖构象受N-构象限制为7桥结构。包含该单体的寡核苷酸(BNACOC)与互补单链RNA表现出高亲和力,并对核酸酶降解具有显着抵抗力。在这里,由2',4'-BNACOC单体组成的BNACOC带有胸腺嘧啶,5-甲基胞嘧啶,腺嘌呤和鸟嘌呤的全部四个碱基,可以有效地合成,并通过UV熔融研究了包含2',4'-BNACOC单体的双链体的性质。实验和圆二色性(CD)光谱。紫外熔解曲线分析表明,BNACOC / BNACOC双链体具有出色的热稳定性,并且BNACOC通过互补的RNA链提高了热稳定性。另一方面,BNACOC / DNA异源双链体显示出与RNA / DNA异源双链体几乎相同的热稳定性。此外,错配的序列研究表明,与相应的天然DNA和RNA相比,BNACOC通过Watson-Crick碱基配对通常可以提高序列选择性。 CD光谱分析表明,BNACOC以类似于天然RNA的方式与互补DNA和RNA形成双链体。

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