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溶液中(R+)n.(Y-)n.(Y+)n三链DNA螺旋的核磁共振研究:T.A.T和C.G.C+碱基三联体形成的亚氨基和氨基质子标记

NMR studies of DNA (R+)n.(Y-)n.(Y+)n triple helices in solution: imino and amino proton markers of T.A.T and C.G.C+ base-triple formation.

作者信息

de los Santos C, Rosen M, Patel D

机构信息

Department of Biochemistry and Molecular Biophysics, College of Physicians and Surgeons, Columbia University, New York, New York 10032.

出版信息

Biochemistry. 1989 Sep 5;28(18):7282-9. doi: 10.1021/bi00444a021.

DOI:10.1021/bi00444a021
PMID:2819069
Abstract

High-resolution exchangeable proton two-dimensional NMR spectra have been recorded on 11-mer DNA triple helices containing one oligopurine (R)n and two oligopyrimidine (Y)n strands at acidic pH and elevated temperatures. Our two-dimensional nuclear Overhauser effect studies have focused on an 11-mer triplex where the third oligopyrimidine strand is parallel to the oligopurine strand. The observed distance connectivities establish that the third oligopyrimidine strand resides in the major groove with the triplex stabilized through formation of T.A.T and C.G.C+ base triples. The T.A.T base triple can be monitored by imino protons of the thymidines involved in Watson-Crick (13.65-14.25 ppm) and Hoogsteen (12.9-13.55 ppm) pairing, as well as the amino protons of adenosine (7.4-7.7 ppm). The amino protons of the protonated (8.5-10.0 ppm) and unprotonated (6.5-8.3 ppm) cytidines in the C.G.C+ base triple provide distinct markers as do the imino protons of the guanosine (12.6-13.3 ppm) and the protonated cytidine (14.5-16.0 ppm). The upfield chemical shift of the adenosine H8 protons (7.1-7.3 ppm) establishes that the oligopurine strand adopts an A-helical base stacking conformation in the 11-mer triplex. These results demonstrate that oligonucleotide triple helices can be readily monitored by NMR at the individual base-triple level with distinct markers differentiating between Watson-Crick and Hoogsteen pairing. Excellent exchangeable proton spectra have also been recorded for (R+)n.(Y-)n.(Y+)n 7-mer triple helices with the shorter length permitting spectra to be recorded at ambient temperature.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在酸性pH值和较高温度下,已对含有一条寡聚嘌呤(R)n链和两条寡聚嘧啶(Y)n链的11聚体DNA三链螺旋体记录了高分辨率可交换质子二维核磁共振谱。我们的二维核Overhauser效应研究集中在一个11聚体三链体上,其中第三条寡聚嘧啶链与寡聚嘌呤链平行。观察到的距离连接性表明,第三条寡聚嘧啶链位于大沟中,三链体通过形成T.A.T和C.G.C +碱基三联体而稳定。T.A.T碱基三联体可通过参与沃森-克里克配对(13.65 - 14.25 ppm)和 hoogsteen配对(12.9 - 13.55 ppm)的胸苷的亚氨基质子以及腺苷的氨基质子(7.4 - 7.7 ppm)进行监测。C.G.C +碱基三联体中质子化(8.5 - 10.0 ppm)和未质子化(6.5 - 8.3 ppm)胞苷的氨基质子以及鸟苷的亚氨基质子(12.6 - 13.3 ppm)和质子化胞苷的亚氨基质子(14.5 - 16.0 ppm)都提供了独特的标记。腺苷H8质子的高场化学位移(7.1 - 7.3 ppm)表明,寡聚嘌呤链在11聚体三链体中采用A - 螺旋碱基堆积构象。这些结果表明,寡核苷酸三链螺旋体可以通过核磁共振在单个碱基三联体水平上轻松监测,不同的标记区分了沃森-克里克配对和hoogsteen配对。对于(R +)n.(Y -)n.(Y +)n 7聚体三链螺旋体也记录了出色的可交换质子谱,较短的长度允许在室温下记录谱图。(摘要截断于250字)

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