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DNA连接体的核磁共振分析:单个臂和完整连接体的亚氨基质子核磁共振研究

NMR analysis of DNA junctions: imino proton NMR studies of individual arms and intact junction.

作者信息

Wemmer D E, Wand A J, Seeman N C, Kallenbach N R

出版信息

Biochemistry. 1985 Oct 8;24(21):5745-9. doi: 10.1021/bi00342a009.

Abstract

The NMR resonances from the hydrogen-bonded guanine and thymine imino protons of base pairs in the four separate complexes forming the arms of a stable DNA four-arm junction have been assigned by using sequential nuclear Overhauser effects connecting protons in adjacent pairs. Comparison of the spectra of these individual duplex arms with that of the intact four-stranded junction suggests that base pairing occurs at the site of branching. The presence of new resonances in the spectrum of the junction can be inferred from comparison of the junction spectrum with the simulated spectra of the four individual arms. In addition, upfield shifts of the ring protons in the base pairs at the penultimate positions in the complex are observed, consistent with a change in the structure at the site of branching. These studies represent the first stage of a detailed analysis of the structure and dynamics of a DNA junction.

摘要

通过利用连接相邻碱基对中质子的连续核Overhauser效应,已对形成稳定DNA四臂连接体臂的四个单独复合物中碱基对的氢键结合鸟嘌呤和胸腺嘧啶亚氨基质子的核磁共振共振进行了归属。将这些单个双链体臂的光谱与完整四链连接体的光谱进行比较,表明碱基配对发生在分支位点。通过将连接体光谱与四个单独臂的模拟光谱进行比较,可以推断出连接体光谱中存在新的共振。此外,观察到复合物中倒数第二个位置的碱基对中环质子的高场位移,这与分支位点的结构变化一致。这些研究代表了对DNA连接体结构和动力学进行详细分析的第一阶段。

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