首页> 美国卫生研究院文献>Nucleic Acids Research >Deuteriation of sugar protons simplify NMR assignments and structure determination of large oligonucleotide by the 1H-NMR window approach.
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Deuteriation of sugar protons simplify NMR assignments and structure determination of large oligonucleotide by the 1H-NMR window approach.

机译:糖质子的氘化通过1H-NMR窗口方法简化了NMR分配和大型寡核苷酸的结构确定。

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摘要

The concept of the 1H-NMR window has been developed and examined through a comparative study of NOESY spectra of a self-complementary Dickerson's dodecamer (I) [5'd(5C6G7C8G9A10A11T12T13C-14G15C16G)2(3')], a self-complementary 20-mer (II) [(5'd(1C2G3C4G5C6G7C8G9A10A11T12T13C14G15C16G17C18G19C20G)2(3')] in which the core part consists of the same Dickerson's dodecamer sequence with the flanking CGCG residues at both 3' and 5'-ends, and the partly-deuteriated (shown by underlined CGCG residues at both 3' and 5'-ends) analogous duplex (III) [5'd(1C2G3C4G5C6G7C8G9A10A11T12T13C14G15C16G17C18G19C20G)2(3')] in which the core 5C to 16G part (i.e. 1H-NMR window) consists of the natural Dickerson's dodecamer sequence. A comparison of their NOESY spectra clearly demonstrates that the severe overlap of proton resonances in the larger DNA duplex (II) has been successfully reduced in the partly-deuterated duplex (III) as a result of specific incorporations of the sugar-deuteriated nucleotide residues in the latter [stereospecific > 97 atom % 2H enrichment at H2', H2'' and H3' sites, approximately 85 atom % 2H enrichment at H4' and approximately 20 atom % 2H enrichment at H1' (see refs. 10 and 11) in the 20-mer duplex (III)]. These simplifications of the resonance overlap by the deuteriation approach have enabled unequivocal chemical shift assignments and extraction of the quantitative NOE data in the 1H-NMR window part of duplex (III). A comparison of the 12-nucleotide long 1H-NMR window in (III) with that of the 12-mer duplex (I) also shows the scope of studying the changes in conformation and dynamics of the core 12-mer region in (III) which result from the increase of molecular weight due to the DNA chain extension. It is noteworthy that such a study is clearly impossible for the natural 20-mer (II) because of the inherent problem of the overlap of resonances.
机译:1H-NMR窗口的概念已通过对自互补Dickerson十二聚体(I)[5'd(5C6G7C8G9A10A11T12T13C-14G15C16G)2(3')]的NOESY光谱进行比较研究而得到开发和检验。 20-mer(II)[(5'd(1C2G3C4G5C6G7C8G9A10A11T12T13C14G15C16G17C18G19C20G)2(3')],其中核心部分由相同的Dickerson's dodecamer序列组成,其CGCG残基位于3'和5'-端氘化(在3'和5'端均用带下划线的CGCG残基表示)的类似双链体(III)[5'd(1C2G3C4G5C6G7C8G9A10A11T12T13C14G15C16G17C18G19C20G)2(3')],其中5C至16G核部分位于窗口中)由自然的Dickerson's dodecamer序列组成,它们的NOESY谱图的比较清楚地表明,由于特异性糖氘化核苷酸残基的掺入s中的s [在H2',H2''和H3'位的立体比> 97原子%2H富集,在H4'处约85原子%2H富集和在H1'处约20原子%2H富集(请参阅参考资料。 10和11)在20-mer双工(III)中]。通过氘化方法对共振重叠的这些简化使得能够明确进行化学位移分配,并能够提取双链体(III)的1H-NMR窗口部分中的定量NOE数据。 (III)中12个核苷酸长的1H-NMR窗口与12-mer双链体(I)的比较也显示了研究(III)核心12-mer区域构象和动力学变化的范围这是由于DNA链延伸导致分子量增加所致。值得注意的是,由于共振重叠的内在问题,对于天然的20-mer(II)来说,这样的研究显然是不可能的。

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