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8-溴脱氧鸟苷掺入对平行四链体结构[d(TGGGT)]4的影响。

Effects of an 8-bromodeoxyguanosine incorporation on the parallel quadruplex structure [d(TGGGT)]4.

作者信息

Esposito Veronica, Randazzo Antonio, Piccialli Gennaro, Petraccone Luigi, Giancola Concetta, Mayol Luciano

机构信息

Dipartimento di Chimica delle Sostanze Naturali, Università degli Studi di Napoli "Federico II", via D. Montesano 49, I-80131 Napoli, Italy.

出版信息

Org Biomol Chem. 2004 Feb 7;2(3):313-8. doi: 10.1039/b314672c. Epub 2004 Jan 12.

Abstract

NMR, molecular dynamics and mechanics calculations, and CD spectroscopy were used to characterise three tetramolecular quadruplex complexes: d(TG(Br)GGT), d(TGG(Br)GT) and d(TGGG(Br)T), where G(Br) indicates an 8-bromoguanine residue. All three quadruplexes are characterised by a 4-fold symmetry with all strands parallel to each other and, differently to what has been observed for other parallel quadruplex structures, with a tetrad (formed by 8-Br-dGs) in a syn conformation. The whole of the data demonstrates that the replacement in turn of different dG residues with 8-Br-dG in the sequence 5[prime or minute]-TGGGT-3[prime or minute] affects the resulting structures in different ways, leading to different CD profiles and thermal stabilities. Particularly, d(TG(Br)GGT) and d(TGG(Br)GT) are more stable than the unmodified sequence, whereas d(TGGG(Br)T) is much less stable than the natural counterpart. The conformational features found in the three quadruplexes might, in principle, amplify the range of applicability of synthetic oligonucleotides as aptamers or catalysts, by providing novel structural motifs with different molecular recognition capabilities from those of native DNA sequences.

摘要

利用核磁共振(NMR)、分子动力学和力学计算以及圆二色光谱(CD)对三种四分子四链体复合物进行了表征:[d(TG(Br)GGT)]₄、[d(TGG(Br)GT)]₄和[d(TGGG(Br)T)]₄,其中G(Br)表示8-溴鸟嘌呤残基。所有这三种四链体均具有四重对称性,所有链相互平行,并且与其他平行四链体结构所观察到的情况不同,其具有处于顺式构象的四联体(由8-Br-dG形成)。所有数据表明,在序列5'-TGGGT-3'中依次用8-Br-dG替换不同的dG残基会以不同方式影响所得结构,导致不同的CD谱和热稳定性。特别地,[d(TG(Br)GGT)]₄和[d(TGG(Br)GT)]₄比未修饰序列更稳定,而[d(TGGG(Br)T)]₄比天然对应物稳定性低得多。原则上,在这三种四链体中发现的构象特征可能会通过提供具有与天然DNA序列不同分子识别能力的新型结构基序,扩大合成寡核苷酸作为适体或催化剂的适用范围。

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