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Comparative structural analysis of 1-methyladenosine, 7-methylguanosine, ethenoadenosine and their protonated salts IV: 1H, 13C, and 15N NMR studies at natural isotope abundance

机译:天然同位素丰度下1-甲基腺苷,7-甲基鸟苷,乙炔腺苷及其质子化盐的比较结构分析IV:1H,13C和15N NMR研究

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The 1H, 13C, 15and N NMR spectra of neutral and protonated forms of the nucleosides 1-methyladenosine (m1A), 7-methylguanosine (m7G) and ethenoadenosine (EA), as a model compound, have been analyzed in order to assign the site of protonation in m1A and m7G. Protonation of these nucleosides occurs in the pyrimidine ring of m1A and EA and in the imidazole ring of m7G, with the charge being distributed rather than localized. Structural differences for both mA and mG were observed in solution and compared with those existing in the crystal state of monomers as well as in tRNA where these nucleosides occur quite often. The protonated nucleoside structures in solution compared favorably in sugar pucker and glycosidic bond conformations with x-ray crystallographic data. Methyl group carbon chemical shifts of the protonated mononucleosides corresponded to those of the methyls of the respective nucleosides in native tRNA structures. Therefore, the tRNA methyl group carbon chemical shifts are indicative of fully protonated nucleosides in the native, three dimensional structure of the nucleic acid.
机译:中性和质子化形式的核苷1-甲基腺苷(m 1的 1 H, 13 C, 15 和N NMR光谱 A),7-甲基鸟苷(m 7 G)和乙腺苷(EA)作为模型化合物,已经进行了分析,以便在m 1中指定质子化位点 A和m 7 G。这些核苷的质子化发生在m 1 A和EA的嘧啶环和m 7 G的咪唑环中,电荷分布而不是局部分布。在溶液中观察到mA和mG的结构差异,并将其与单体和存在于核苷中的核糖核酸经常出现的tRNA中的晶体差异进行比较。与X射线晶体学数据相比,溶液中的质子化核苷结构在糖褶和糖苷键构象方面具有优势。质子化的单核苷的甲基碳化学位移与天然tRNA结构中相应核苷的甲基的化学位移相对应。因此,tRNA甲基碳化学位移指示了核酸的天然三维结构中的完全质子化的核苷。

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