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富含鸟嘌呤序列中的微小变化,拓扑结构的显著改变:具有独特环取向的新型二聚体G-四链体折叠基序。

Small change in a G-rich sequence, a dramatic change in topology: new dimeric G-quadruplex folding motif with unique loop orientations.

作者信息

Crnugelj Martin, Sket Primoz, Plavec Janez

机构信息

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

出版信息

J Am Chem Soc. 2003 Jul 2;125(26):7866-71. doi: 10.1021/ja0348694.

Abstract

NMR study has shown that DNA oligonucleotide d(G(3)T(4)G(4)) adopts an asymmetric bimolecular G-quadruplex structure in solution. The structure of d(G(3)T(4)G(4))(2) is composed of three G-quartets, overhanging G11 residue and G3, which is part of the loop. Unique structural feature of d(G(3)T(4)G(4))(2) fold is the orientation of the two loops. Thymidine residues T4-T7 form a diagonal loop, whereas T15-T18 form an edge type loop. The G-quadruplex core of d(G(3)T(4)G(4))(2) consists of two stacked G-quartets with syn-anti-anti-anti alternation of dG residues and one G-quartet with syn-syn-anti-anti alternation. Another unusual structural feature of d(G(3)T(4)G(4))(2) is a leap between G19 and G20 over the middle G-quartet and chain reversal between G19 and G20 residues. The presence of one antiparallel and three parallel strands reveals the hitherto unknown G-quadruplex folding motif consisting of antiparallel/parallel strands and diagonal as well as edge type loops. Further examination of the influence of different monovalent cations on the folding of d(G(3)T(4)G(4)) showed that it forms a bimolecular G-quadruplex in the presence of K+, Na+, and NH4+ ions with the same general fold.

摘要

核磁共振研究表明,DNA寡核苷酸d(G(3)T(4)G(4))在溶液中采用不对称双分子G-四链体结构。d(G(3)T(4)G(4))(2)的结构由三个G-四重体、突出的G11残基和作为环一部分的G3组成。d(G(3)T(4)G(4))(2)折叠的独特结构特征是两个环的取向。胸腺嘧啶残基T4 - T7形成一个对角环,而T15 - T18形成一个边缘型环。d(G(3)T(4)G(4))(2)的G-四链体核心由两个堆叠的G-四重体组成,dG残基具有顺-反-反-反交替,还有一个G-四重体具有顺-顺-反-反交替。d(G(3)T(4)G(4))(2)的另一个不寻常结构特征是中间G-四重体上G19和G20之间的跳跃以及G19和G20残基之间的链反转。一条反平行链和三条平行链的存在揭示了迄今为止未知的由反平行/平行链以及对角和边缘型环组成的G-四链体折叠基序。进一步研究不同单价阳离子对d(G(3)T(4)G(4))折叠的影响表明,它在K+、Na+和NH4+离子存在下形成具有相同总体折叠的双分子G-四链体。

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