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G-四链体结构中的构象多态性:通过碱基翻转或糖基翻转实现链反转。

Conformational polymorphism in G-tetraplex structures: strand reversal by base flipover or sugar flipover.

作者信息

Mohanty D, Bansal M

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore.

出版信息

Nucleic Acids Res. 1993 Apr 25;21(8):1767-74. doi: 10.1093/nar/21.8.1767.

Abstract

Guanine rich sequences adopt a variety of four stranded structures, which differ in strand orientation and conformation about the glycosidic bond even though they are all stabilised by Hoogsteen hydrogen bonded guanine tetrads. Detailed model building and molecular mechanics calculations have been carried out to investigate various possible conformations of guanines along a strand and different possible orientations of guanine strands in a G-tetraplex structure. It is found that for an oligo G stretch per se, a parallel four stranded structure with all guanines in anti conformation is favoured over other possible tetraplex structures. Hence an alternating syn-anti arrangement of guanines along a strand is likely to occur only in folded back tetraplex structures with antiparallel G strands. Our study provides a theoretical rationale for the observed alternation of glycosidic conformation and the inverted stacking arrangement arising from base flipover, in antiparallel G-tetraplex structures and also highlights the various structural features arising due to different types of strand orientations. The molecular mechanics calculations help in elucidating the various interactions which stabilize different G-tetraplex structures and indicate that screening of phosphate charge by counterions could have a dramatic effect on groove width in these four stranded structures.

摘要

富含鸟嘌呤的序列会形成多种四链结构,尽管它们都通过Hoogsteen氢键连接的鸟嘌呤四联体得以稳定,但在链的方向以及糖苷键的构象方面存在差异。已进行了详细的模型构建和分子力学计算,以研究一条链上鸟嘌呤的各种可能构象以及鸟嘌呤链在G-四链体结构中的不同可能方向。研究发现,对于寡聚G片段本身而言,所有鸟嘌呤均处于反式构象的平行四链结构比其他可能的四链结构更受青睐。因此,鸟嘌呤沿链交替出现的顺-反排列可能仅出现在具有反平行G链的回折四链结构中。我们的研究为反平行G-四链体结构中观察到的糖苷键构象交替以及由碱基翻转引起的反向堆积排列提供了理论依据,同时也突出了由于不同类型的链方向而产生的各种结构特征。分子力学计算有助于阐明稳定不同G-四链体结构的各种相互作用,并表明抗衡离子对磷酸根电荷的屏蔽可能会对这些四链结构的沟宽产生显著影响。

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本文引用的文献

1
Dynamics of DNA oligomers.DNA寡聚物的动力学
J Biomol Struct Dyn. 1983 Oct;1(1):231-52. doi: 10.1080/07391102.1983.10507437.
2
The molecular structure of centromeres and telomeres.着丝粒和端粒的分子结构。
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