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GN(R)A发夹环基序在RNA与DNA之间的可转移性。

Portability of the GN(R)A hairpin loop motif between RNA and DNA.

作者信息

Blose Joshua M, Lloyd Kenneth P, Bevilacqua Philip C

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

Biochemistry. 2009 Sep 22;48(37):8787-94. doi: 10.1021/bi901038s.

DOI:10.1021/bi901038s
PMID:19681609
Abstract

Hairpins are common nucleic acid secondary structures that serve many structural and functional roles. Recently, we reported that r(UNCG) and r(GNRA) hairpin families use molecular mimicry and electrostatic factors to attain exceptional thermodynamic stability with a CG closing base pair (cbp). Despite having very different overall folds, these tetraloops present the same functionalities and partial charges to the major groove edge of the CG cbp to achieve stability. Herein, we compare the r(GNRA) tetraloop family to the DNA triloop family d(GNA), which is also exceptionally stable with a CG cbp and possesses the same base pairing between the first and last positions of the loop. Nucleobase and functional group modifications were used to investigate interactions of d(GNA) loops with the cbp, which provided for comparison with similar substitutions in r(GNRA) hairpins. Interruption or deletion of loop-cbp interactions in d(GNA) was consistent with electrostatic interactions identified through nonlinear Poisson-Boltzmann (NLPB) calculations, and loop stability changed in a manner consistent with similar loop-cbp interactions for d(GNA) and r(GNRA) loops. We also compared the relationship of DeltaG degrees (37) and log[Na+] for d(GNA) and r(GNRA) loops and found a decreased dependence of stability on salt for both loop families when a CG cbp was present. The similarity of the loop-cbp interactions shows portability of this loop-cbp motif across polymer type and loop size and indicates convergence on similar molecular solutions for stability in RNA and DNA.

摘要

发夹是常见的核酸二级结构,具有多种结构和功能作用。最近,我们报道了r(UNCG)和r(GNRA)发夹家族利用分子模拟和静电因素,通过CG封闭碱基对(cbp)实现了异常的热力学稳定性。尽管这些四环的整体折叠非常不同,但它们向CG cbp的大沟边缘呈现相同的功能和部分电荷以实现稳定性。在此,我们将r(GNRA)四环家族与DNA三环家族d(GNA)进行比较,后者与CG cbp也异常稳定,并且在环的第一个和最后一个位置之间具有相同的碱基配对。使用核碱基和官能团修饰来研究d(GNA)环与cbp的相互作用,以便与r(GNRA)发夹中的类似取代进行比较。d(GNA)中环-cbp相互作用的中断或缺失与通过非线性泊松-玻尔兹曼(NLPB)计算确定的静电相互作用一致,并且环稳定性的变化方式与d(GNA)和r(GNRA)环的类似环-cbp相互作用一致。我们还比较了d(GNA)和r(GNRA)环的ΔG°(37)与log[Na⁺]的关系,发现当存在CG cbp时,两个环家族的稳定性对盐的依赖性都降低了。环-cbp相互作用的相似性表明这种环-cbp基序在聚合物类型和环大小之间具有可移植性,并表明在RNA和DNA中稳定性的分子解决方案具有趋同性。

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