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在存在钾离子、钠离子或铵根离子的情况下,d(G3T4G4)形成具有相同一般折叠形式的异常二聚体G-四链体结构。

d(G3T4G4) forms unusual dimeric G-quadruplex structure with the same general fold in the presence of K+, Na+ or NH4+ ions.

作者信息

Sket Primoz, Crnugelj Martin, Plavec Janez

机构信息

NMR Center, National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.

出版信息

Bioorg Med Chem. 2004 Nov 15;12(22):5735-44. doi: 10.1016/j.bmc.2004.08.009.

Abstract

We have recently communicated that DNA oligonucleotide d(G(3)T(4)G(4)) forms a dimeric G-quadruplex in the presence of K(+) ions [J. Am. Chem. Soc.2003, 125, 7866-7871]. The high-resolution NMR structure of d(G(3)T(4)G(4))(2) G-quadruplex exhibits G-quadruplex core consisting of three stacked G-quartets. The two overhanging G3 and G11 residues are located at the opposite sides of the end G-quartets and are not involved in G-quartet formation. d(G(3)T(4)G(4))(2) G-quadruplex represents the first bimolecular G-quadruplex where end G-quartets are spanned by diagonal (T4-T7) as well as edge-type loops (T15-T18). Three of the G-rich strands are parallel while one is anti-parallel. The G12-G22 strand demonstrates a sharp reversal in strand direction between residues G19 and G20 that is accommodated with the leap over the middle G-quartet. The reversal in strand direction is achieved without any extra intervening residues. Here we furthermore examined the influence of different monovalent cations on the folding of d(G(3)T(4)G(4)). The resolved imino and aromatic proton resonances as well as (sequential) NOE connectivity patterns showed only minor differences in key intra- and interquartet NOE intensities in the presence of K(+), Na(+) and NH(4)(+) ions, which were consistent with subtle structural differences while retaining the same folding topology of d(G(3)T(4)G(4))(2) G-quadruplex.

摘要

我们最近报道了DNA寡核苷酸d(G(3)T(4)G(4))在K(+)离子存在下形成二聚体G-四链体[《美国化学会志》2003年,125卷,7866 - 7871页]。d(G(3)T(4)G(4))(2) G-四链体的高分辨率核磁共振结构显示,其G-四链体核心由三个堆叠的G-四重奏组成。两个突出的G3和G11残基位于末端G-四重奏的相对两侧,不参与G-四重奏的形成。d(G(3)T(4)G(4))(2) G-四链体代表第一个双分子G-四链体,其中末端G-四重奏由对角(T4 - T7)以及边缘型环(T15 - T18)跨越。三条富含G的链是平行的,而一条是反平行的。G12 - G22链在G19和G20残基之间表现出链方向的急剧反转,这通过跨越中间G-四重奏来实现。链方向的反转无需任何额外的中间残基即可完成。在此,我们进一步研究了不同单价阳离子对d(G(3)T(4)G(4))折叠的影响。解析得到的亚氨基和芳香族质子共振以及(顺序)NOE连接模式表明,在存在K(+)、Na(+)和NH(4)(+)离子的情况下,关键的四重奏内和四重奏间NOE强度仅存在微小差异,这与细微的结构差异一致,同时保留了d(G(3)T(4)G(4))(2) G-四链体相同的折叠拓扑结构。

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