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2'-5'平行链双螺旋的原子分辨率可视化:胞苷-2',5'-腺苷的晶体结构

Visualisation of a 2'-5' parallel stranded double helix at atomic resolution: crystal structure of cytidylyl-2',5'-adenosine.

作者信息

Kirshnan R, Seshadri T P, Viswamitra M A

机构信息

Department of Physics, Indian Institute of Science, Bangalore.

出版信息

Nucleic Acids Res. 1991 Jan 25;19(2):379-84. doi: 10.1093/nar/19.2.379.

Abstract

X-ray crystallographic studies on 3'-5' oligomers have provided a great deal of information on the stereochemistry and conformational flexibility of nucleic acids and polynucleotides. In contrast, there is very little information available on 2'-5' polynucleotides. We have now obtained the crystal structure of Cytidylyl-2',5'-Adenosine (C2'p5'A) at atomic resolution to establish the conformational differences between these two classes of polymers. The dinucleoside phosphate crystallises in the monoclinic space group C2, with a = 33.912(4)A, b = 16.824(4)A, c = 12.898(2)A and beta = 112.35(1) with two molecules in the asymmetric unit. Spectacularly, the two independent C2'p5'A molecules in the asymmetric unit form right handed miniature parallel stranded double helices with their respective crystallographic two fold (b axis) symmetry mates. Remarkably, the two mini duplexes are almost indistinguishable. The cytosines and adenines form self-pairs with three and two hydrogen bonds respectively. The conformation of the C and A residues about the glycosyl bond is anti same as in the 3'-5' analog but contrasts the anti and syn geometry of C and A residues in A2'p5'C. The furanose ring conformation is C3' endo, C2' endo mixed puckering as in the C3'p5'A-proflavine complex. A comparison of the backbone torsion angles with other 2'-5' dinucleoside structures reveals that the major deviations occur in the torsion angles about the C3'-C2' and C4'-C3' bonds. A right-handed 2'-5' parallel stranded double helix having eight base pairs per turn and 45 degrees turn angle between them has been constructed using this dinucleoside phosphate as repeat unit. A discussion on 2'-5' parallel stranded double helix and its relevance to biological systems is presented.

摘要

对3'-5'寡聚物的X射线晶体学研究提供了大量关于核酸和多核苷酸立体化学及构象灵活性的信息。相比之下,关于2'-5'多核苷酸的信息却非常少。我们现已获得胞苷酰-2',5'-腺苷(C2'p5'A)的原子分辨率晶体结构,以确定这两类聚合物之间的构象差异。磷酸二核苷在单斜空间群C2中结晶,a = 33.912(4)埃,b = 16.824(4)埃,c = 12.898(2)埃,β = 112.35(1),不对称单元中有两个分子。引人注目的是,不对称单元中的两个独立C2'p5'A分子与其各自晶体学二重(b轴)对称配偶体形成右手微型平行链双螺旋。值得注意的是,这两个微型双链几乎无法区分。胞嘧啶和腺嘌呤分别通过三个和两个氢键形成自配对。C和A残基围绕糖苷键的构象与3'-5'类似物一样为反式,但与A2'p5'C中C和A残基的反式和顺式几何结构形成对比。呋喃糖环构象与C3'p5'A-原黄素复合物一样为C3'内型、C2'内型混合褶皱。将主链扭转角与其他2'-5'二核苷结构进行比较发现,主要偏差出现在围绕C3'-C2'和C4'-C3'键的扭转角上。以这种磷酸二核苷为重复单元构建了一个每圈有八个碱基对且它们之间转角为45度的右手2'-5'平行链双螺旋。本文还讨论了2'-5'平行链双螺旋及其与生物系统的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f209/333605/34e18a9d24b1/nar00238-0174-a.jpg

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