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用G-四链体识别分子BMVC对d(TTAGGG)4和d(TTAGGG)13进行钾滴定后的光谱转换研究。

Investigation of spectral conversion of d(TTAGGG)4 and d(TTAGGG)13 upon potassium titration by a G-quadruplex recognizer BMVC molecule.

作者信息

Chang Cheng-Chung, Chien Chih-Wei, Lin Yi-Hsueh, Kang Chi-Chih, Chang Ta-Chau

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica, PO Box 23-166, Taipei, 106, Taiwan, Republic of China.

出版信息

Nucleic Acids Res. 2007;35(9):2846-60. doi: 10.1093/nar/gkm155. Epub 2007 Apr 11.

Abstract

We have introduced a G-quadruplex-binding ligand, 3,6-bis(1-methyl-4-vinylpyridinium)carbazole diiodide (BMVC), to verify the major structure of d(T2AG3)4 (H24) in potassium solution and examine the structural conversion of H24 in sodium solution upon potassium titration. The studies of circular dichroism, induced circular dichroism, spectral titration and gel competition have allowed us to determine the binding mode and binding ratio of BMVC to the H24 in solution and eliminate the parallel form as the major G-quadruplex structure. Although the mixed-type form could not be eliminated as a main component, the basket and chair forms are more likely the main components of H24 in potassium solution. In addition, the circular dichroism spectra and the job plots reveal that a longer telomeric sequence d(T2AG3)13 (H78) could form two units of G4 structure both in sodium or potassium solutions. Of particular interest is that no appreciable change on the induced circular dichroism spectra of BMVC is found during the change of the circular dichroism patterns of H24 upon potassium titration. Considering similar spectral conversion detected for H24 and a long sequence H78 together with the G4 structure stabilized by BMVC, it is therefore unlikely that the rapid spectral conversion of H24 and H78 is due to structural change between different types of the G4 structures. With reference to the circular dichroism spectra of d(GAA)7 and d(GAAA)5, we suggest that the spectral conversion of H24 upon potassium titration is attributed to fast ion exchange resulting in different loop base interaction and various hydrogen bonding effects.

摘要

我们引入了一种G-四链体结合配体,即3,6-双(1-甲基-4-乙烯基吡啶鎓)咔唑二碘化物(BMVC),以验证钾溶液中d(T2AG3)4 (H24)的主要结构,并研究钠溶液中H24在钾滴定后的结构转变。通过圆二色性、诱导圆二色性、光谱滴定和凝胶竞争实验,我们确定了BMVC与溶液中H24的结合模式和结合比例,并排除了平行形式作为主要的G-四链体结构。尽管混合型不能被排除为主成分,但篮式和椅式更可能是钾溶液中H24的主要成分。此外,圆二色光谱和工作曲线表明,较长的端粒序列d(T2AG3)13 (H78)在钠溶液或钾溶液中都能形成两个G4结构单元。特别有趣的是,在钾滴定过程中H24的圆二色性模式发生变化时,BMVC的诱导圆二色光谱没有明显变化。考虑到H24和长序列H78检测到的类似光谱转变以及BMVC稳定的G4结构,因此H24和H78的快速光谱转变不太可能是由于不同类型G4结构之间的结构变化。参照d(GAA)7和d(GAAA)5的圆二色光谱,我们认为钾滴定后H24的光谱转变归因于快速离子交换,导致不同的环碱基相互作用和各种氢键效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb43/1888807/401f197e3bfb/gkm155s1.jpg

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