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短DNA双链体的构象与动力学:(dC-dG)3和(dC-dG)4

Conformation and dynamics of short DNA duplexes: (dC-dG)3 and (dC-dG)4.

作者信息

Borer P N, Zanatta N, Holak T A, Levy G C, van Boom J H, Wang A H

机构信息

Department of Chemistry, Syracuse University, New York 13210.

出版信息

J Biomol Struct Dyn. 1984 Jun;1(6):1373-86. doi: 10.1080/07391102.1984.10507526.

Abstract

Natural abundance 13C NMR spectra of duplexed (dC-dG)3 and (dC-dG)4 exhibit resolved resonances for most of the carbons at 0.1M NaCl in aqueous solution. Large transitions in chemical shift for many of the hexamer carbons (up to 1.8 ppm) are observed in variable temperature measurements. Determination of spin-lattice relaxation times and nuclear Overhauser enhancements in 0.1M NaCl indicate that the duplexes tumble almost isotropically, with overall correlation times near 5 nsec; the sugar carbons experience more rapid local motions than do the base carbons. The relaxation data are also consistent with the most rapid local motions occurring at the chain-terminal residues, especially in the Cyd(1) sugar. 4M NaCl causes changes in the 13C chemical shifts of most of the guanine base carbons, and rearrangements in the deoxyribose carbon shifts; this is consistent with changes predicted by a salt-induced B to Z transition, viz. conversion of the guanylates from the anti to syn range about the glycosyl bond, and from the S to N pseudorotational state of the deoxyribose ring.

摘要

双链体(dC-dG)3和(dC-dG)4的天然丰度13C NMR谱在0.1M NaCl水溶液中对大多数碳原子呈现出分辨的共振峰。在变温测量中观察到许多六聚体碳原子的化学位移有较大变化(高达1.8 ppm)。在0.1M NaCl中对自旋晶格弛豫时间和核Overhauser增强的测定表明,双链体几乎各向同性地翻滚,整体相关时间接近5纳秒;糖碳原子比碱基碳原子经历更快的局部运动。弛豫数据也与链端残基处,特别是Cyd(1)糖中发生的最快局部运动一致。4M NaCl导致大多数鸟嘌呤碱基碳原子的13C化学位移发生变化,以及脱氧核糖碳位移发生重排;这与盐诱导的B到Z转变所预测的变化一致,即鸟苷酸围绕糖苷键从反式到顺式范围的转变,以及脱氧核糖环从S到N假旋转状态的转变。

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