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Backbone Dynamics in the DNA Hhal Protein Binding Site

机译:DNA Hhal蛋白结合位点的骨干动力学

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The dynamics of the phosphodiester backbone in the [5'-GCGC-3']_2 moiety of the DNA oligomer [d(G_1A_2T_3A_4G_5C_6G_7C_8T_9A_(10)T_(11)C_(12))]_2 are studied using deuterium solid-state NMR (SSNMR). SSNMR spectra obtained from DNAs nonstereospecifically deuterated on the 5' methylene group of nucleotides within the [5'-GCGC-3']_2 moiety indicated that all of these positions are structurally flexible. Previous work has shown that methylation reduces the amplitude of motion in the phosphodiester backbone and furanose ring of the same DNA, and our observations indicate that methylation perturbs backbone dynamics through not only a loss of mobility but also a change of direction of motion. These NMR data indicate that the [5'-GCGC-3']_2 moiety is dynamic, with the largest amplitude motions occurring nearest the methylation site. The change of orientation of this moiety in DNA upon methylation may make the molecule less amenable to binding to the Hhal endonuclease.
机译:使用氘代固态NMR([d(G_1A_2T_3A_4G_5C_6G_7C_8T_9A_(10)T_(11)C_(12))] _ 2研究了DNA低聚物[5'-GCGC-3'] _ 2部分中磷酸二酯主链的动力学SSNMR)。从[5'-GCGC-3'] _ 2部分内核苷酸的5'亚甲基非立体氘代的DNA获得的SSNMR光谱表明,所有这些位置在结构上都是灵活的。先前的研究表明,甲基化可降低同一DNA的磷酸二酯主链和呋喃糖环中的运动幅度,而我们的观察结果表明,甲基化不仅通过丧失活动性,而且通过改变运动方向来扰乱主链动力学。这些NMR数据表明[5'-GCGC-3'] _ 2部分是动态的,最大振幅运动发生在最接近甲基化位点处。甲基化后,该部分在DNA中的方向发生变化,可能会使该分子不易与Hhal核酸内切酶结合。

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