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富含腺嘌呤的单链DNA和RNA保留了其各自双链构象的结构特征,并在堆积模式上表现出方向差异。

Single-stranded adenine-rich DNA and RNA retain structural characteristics of their respective double-stranded conformations and show directional differences in stacking pattern.

作者信息

Isaksson J, Acharya S, Barman J, Cheruku P, Chattopadhyaya J

机构信息

Department of Bioorganic Chemistry, Box 581, Biomedical Center, Uppsala University, S-751 23 Uppsala, Sweden.

出版信息

Biochemistry. 2004 Dec 28;43(51):15996-6010. doi: 10.1021/bi048221v.

Abstract

The structural preorganization of isosequential ssDNA and ssRNA hexamers d/r(GAAAAC)(1) [J. Am. Chem. Soc. 2003, 125, 9948] have been investigated by NMR and molecular dynamics simulations. Analysis of the nuclear Overhauser effect spectrometry (NOESY) footprints in the aqueous solution has shown that there is a substantial population of ordered right-handed helical structure in both hexameric single-stranded DNA and RNA, which are reminiscent of their respective right-handed helical duplex form, despite the fact these single-stranded molecules are devoid of any intermolecular hydrogen bonds. The NMR-constrained molecular dynamics (1.5 ns) derived geometries of the adenine-adenine overlaps at each dinucleotide step of the hexameric ssDNA (1a) and ssRNA (1b) show that the relatively electron-rich imidazole stacks above the electron-deficient pyrimidine in 5' to 3' direction in ssDNA (1a) while, in contradistinction, the pyrimidine stacks above the imidazole in the 5' to 3' direction in ssRNA (1b). This also means that the pi-frame of the 5'-pyrimidine can interact with the relatively positively charged imino and amino protons in the 3' direction in ssRNA and in the 5' direction in ssDNA, thereby stabilizing the twist and slide observed in the stacked oligonucleotides. The differently preferred stacking geometries in ssDNA and ssRNA have direct physicochemical implications for self-assembly and pK(a) modulation by the nearest-neighbor interactions, as well as for the dangling-end stabilization effects and imino-proton reactivity.

摘要

通过核磁共振(NMR)和分子动力学模拟研究了等序列单链DNA和单链RNA六聚体d/r(GAAAAC)(1) [《美国化学会志》2003年,第125卷,9948页] 的结构预组织。对水溶液中核Overhauser效应光谱法(NOESY)足迹的分析表明,六聚体单链DNA和RNA中都存在大量有序的右手螺旋结构,这让人联想到它们各自的右手螺旋双链体形式,尽管这些单链分子没有任何分子间氢键。核磁共振约束分子动力学(1.5纳秒)得出的六聚体单链DNA(1a)和单链RNA(1b)每个二核苷酸步长处腺嘌呤-腺嘌呤重叠的几何结构表明,在单链DNA(1a)中,相对富含电子的咪唑在5'至3'方向上堆叠在电子缺乏的嘧啶上方,而与之相反,在单链RNA(1b)中,嘧啶在5'至3'方向上堆叠在咪唑上方。这也意味着5'-嘧啶的π框架可以与单链RNA中3'方向以及单链DNA中5'方向上相对带正电的亚氨基和氨基质子相互作用,从而稳定堆叠寡核苷酸中观察到的扭曲和滑动。单链DNA和单链RNA中不同偏好的堆叠几何结构对通过最近邻相互作用进行的自组装和pKa调节,以及对悬垂端稳定效应和亚氨基质子反应性具有直接的物理化学影响。

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