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Easily denaturing nucleic acids derived from intercalating nucleic acids: thermal stability studies dual duplex invasion and inhibition of transcription start

机译:容易使插入核酸衍生的核酸变性:热稳定性研究双重双链体入侵和转录起始抑制

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摘要

The bulged insertions of (R)-1-O-(pyren-1-ylmethyl)glycerol (monomer P) in two complementary 8mer DNA strands (intercalating nucleic acids) opposite to each other resulted in the formation of an easily denaturing duplex, which had lower thermal stability (21.0°C) than the wild-type double-stranded DNA (dsDNA, 26.0°C), but both modified oligodeoxynucleotides had increased binding affinity toward complementary single-stranded DNA (ssDNA) (41.5 and 39.0°C). Zipping of pyrene moieties in an easily denaturing duplex gave formation of a strong excimer band at 480 nm upon excitation at 343 nm in the steady-state fluorescence spectra. The excimer band disappeared upon addition of a similar short dsDNA, but remained when adding a 128mer dsDNA containing the same sequence. When P was inserted into 2′-OMe-RNA strands, the duplex with zipping P was found to be more stable (42.0°C) than duplexes with the complementary ssDNAs (31.5 and 19.5°C). The excimer band observed in the ds2′-OMe-RNA with zipping P had marginal changes upon addition of both 8 and 128mer dsDNA. Synthesized oligonucleotides were tested in a transcriptional inhibition assay for targeting of the open complex formed by Escherichia coli RNA polymerase with the lac UV-5 promoter using the above mentioned 128mer dsDNA. Inhibition of transcription was observed for 8mer DNAs possessing pyrene intercalators and designed to target both template and non-template DNA strands within the open complex. The observed inhibition was partly a result of unspecific binding of the modified DNAs to the RNA polymerase. Furthermore, the addition of 8mer DNA with three bulged insertions of P designed to be complementary to the template strand at the +36 to +43 position downstream of the transcription start resulted in a specific halt of transcription producing a truncated RNA transcript. This is to our knowledge the first report of an RNA elongation stop mediated by a small DNA sequence possessing intercalators. The insertions of P opposite to each other in ds2′-OMe-RNA showed inhibition efficiency of 96% compared with 25% for unmodified ds2′-OMe-RNA.
机译:(R)-1-O-(吡喃-1-基甲基)甘油(单体P)在彼此相对的两条互补8mer DNA链(插入核酸)中的凸起插入导致形成易于变性的双链体具有比野生型双链DNA(dsDNA,26.0°C)更低的热稳定性(21.0°C),但是两种修饰的寡脱氧核苷酸均具有对互补单链DNA(ssDNA)的增加的结合亲和力(41.5和39.0°C) 。在稳态荧光光谱中于343 nm激发时,在易于变性的双链体中对of部分进行拉链处理可在480 nm处形成强大的准分子带。准分子带在添加相似的短dsDNA时消失,但在添加包含相同序列的128mer dsDNA时保留。当将P插入2'-OMe-RNA链时,发现带有拉链P的双链体(42.0°C)比具有互补ssDNA的双链体(31.5和19.5°C)更稳定。加入8和128mer dsDNA后,在带有拉链P的ds2'-OMe-RNA中观察到的准分子带具有边际变化。使用上述128mer dsDNA,在转录抑制测定中测试合成的寡核苷酸,以靶向由大肠杆菌RNA聚合酶与lac UV-5启动子形成的开放复合物。对于具有pyr嵌入剂并设计为靶向开放复合物中的模板和非模板DNA链的8mer DNA,观察到了转录抑制作用。观察到的抑制作用部分是由于修饰的DNA与RNA聚合酶非特异性结合所致。此外,添加具有三个凸起的P的8mer DNA,这些P设计为与转录起点下游+36至+43位置处的模板链互补,从而导致特定的转录终止,从而产生截短的RNA转录物。据我们所知,这是由具有嵌入剂的小DNA序列介导的RNA延伸终止的首次报道。 ds2'-OMe-RNA中彼此相反的P插入显示出96%的抑制效率,而未修饰的ds2'-OMe-RNA则为25%。

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