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FTIR spectroscopic studies of oligonucleotides that model a triple-helical domain in self-splicing group I introns

机译:FTIR光谱学研究寡核苷酸的模型,该寡核苷酸可模拟自剪接的I组内含子中的三螺旋结构域

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Fourier Transform infrared (FTIR) spectroscopy was used to characterize the Mg2+ dependent association of a 23-mer mixed ribo-deoxyribonucleotide (23-mer RNA) and a 7-mer oligoribonucleotide (7-mer RNA) that models the triple-helical domain of a self-splicing group I intron [Sarkar et al. (1996) Biochemistry 35, 4678-4688]. To elucidate the effect of deoxyribose substitution in the entire backbone, as well as at specific positions, in the assembly of the triple-helical domain, parallel studies were carried out on the association of pure deoxyribonucleotides having base sequences corresponding to the oligoribonucleotides and also between 23-mer RNA and two 7-mer RNA variants. In the variants, either the ribose attached to G451 or the ribose attached to U453 was changed to deoxyribose. FTIR-monitored thermal denaturation of the two 23-mer hairpins shows two distinct melting regions in 1 M NaCl, in case of the RNA hairpin but not for the 23-mer DNA. Triple-helix association between the two strands (7-mer and 23-mer) studied by FTIR show that only when both strands are RNA, association takes place with the formation of the P6 helix. Our results also show that the interactions between the two RNA strands involve some participation of the riboses, which could also involve the 2'-OH groups of the RNA backbone. The assembly of the triple-helical domain is not possible with a deoxyribose backbone and is completely perturbed even when only one ribose at either G451 or U453 position is substituted by deoxyribose.
机译:傅里叶变换红外(FTIR)光谱用于表征23-mer混合核糖-脱氧核糖核苷酸(23-mer RNA)和7-mer寡核糖核苷酸(7-mer RNA)的Mg2 +依赖性缔合,该缔合模型模拟了三螺旋结构域。一个自我拼凑的I组内含子[Sarkar等。 (1996)Biochemistry 35,4678-4688]。为阐明脱氧核糖取代在整个三螺旋结构域中在整个主链以及特定位置的作用,对具有与寡核糖核苷酸相对应的碱基序列的纯脱氧核糖核苷酸的缔合进行了平行研究。 23-mer RNA和两个7-mer RNA变体。在变体中,将附着于G451的核糖或附着于U453的核糖变为脱氧核糖。 FTIR监控的两个23-mer发夹的热变性在1M NaCl中显示了两个不同的融解区域(如果使用RNA发夹而不是23-mer DNA)。 FTIR研究的两条链(7-mer和23-mer)之间的三螺旋缔合表明,只有当两条链都是RNA时,缔合才与P6螺旋的形成有关。我们的结果还表明,两条RNA链之间的相互作用涉及核糖的某些参与,这也可能涉及RNA主链的2'-OH基团。用脱氧核糖主链不可能实现三螺旋结构域的组装,并且即使当在G451或U453位置上只有一个核糖被脱氧核糖取代时,三螺旋结构域也无法被完全干扰。

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