首页> 美国卫生研究院文献>Nucleic Acids Research >Differential stability of 2′F-ANA•RNA and ANA•RNA hybrid duplexes: roles of structure pseudohydrogen bonding hydration ion uptake and flexibility
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Differential stability of 2′F-ANA•RNA and ANA•RNA hybrid duplexes: roles of structure pseudohydrogen bonding hydration ion uptake and flexibility

机译:2F-ANA•RN​​A和ANA•RN​​A杂种双链体的差异稳定性:结构假氢键水合离子吸收和柔韧性的作用

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摘要

Hybrids of RNA with arabinonucleic acids 2′F-ANA and ANA have very similar structures but strikingly different thermal stabilities. We now present a thorough study combining NMR and other biophysical methods together with state-of-the-art theoretical calculations on a fully modified 10-mer hybrid duplex. Comparison between the solution structure of 2′F-ANA•RNA and ANA•RNA hybrids indicates that the increased binding affinity of 2′F-ANA is related to several subtle differences, most importantly a favorable pseudohydrogen bond (2′F–purine H8) which contrasts with unfavorable 2′-OH–nucleobase steric interactions in the case of ANA. While both 2′F-ANA and ANA strands maintained conformations in the southern/eastern sugar pucker range, the 2′F-ANA strand’s structure was more compatible with the A-like structure of a hybrid duplex. No dramatic differences are found in terms of relative hydration for the two hybrids, but the ANA•RNA duplex showed lower uptake of counterions than its 2′F-ANA•RNA counterpart. Finally, while the two hybrid duplexes are of similar rigidities, 2′F-ANA single strands may be more suitably preorganized for duplex formation. Thus the dramatically increased stability of 2′F-ANA•RNA and ANA•RNA duplexes is caused by differences in at least four areas, of which structure and pseudohydrogen bonding are the most important.
机译:RNA与阿拉伯核酸2'F-ANA和ANA的杂交体具有非常相似的结构,但热稳定性却截然不同。现在,我们对完全修饰的10-mer杂交双链体结合NMR和其他生物物理方法以及最新的理论计算进行了深入的研究。 2'F-ANA•RN​​A和ANA•RN​​A杂种溶液结构的比较表明2'F-ANA的结合亲和力增加与几个细微差异有关,最重要的是一个良好的假氢键(2'F-嘌呤H8 ),这与ANA的不利2'-OH-核碱基空间相互作用形成对比。尽管2'F-ANA和ANA链均在南部/东部糖皱范围内保持构象,但2'F-ANA链的结构与杂交双链体的A样结构更相容。两种杂种的相对水合作用没有发现显着差异,但是ANA•RN​​A双链体的抗衡离子摄取量低于其2'F-ANA•RN​​A对应物。最后,尽管两个杂交双链体具有相似的刚性,但是2'F-ANA单链可以更适合地被预组织以形成双链体。因此,2'F-ANA•RN​​A和ANA•RN​​A双链体的稳定性显着提高是由至少四个区域的差异引起的,其中四个区域的结构和假氢键最为重要。

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