首页> 美国卫生研究院文献>Nucleic Acids Research >31P-NMR analysis of the B to Z transition in double-stranded (dC-dG)3 and (dC-dG)4 in high salt solution.
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31P-NMR analysis of the B to Z transition in double-stranded (dC-dG)3 and (dC-dG)4 in high salt solution.

机译:在高盐溶液中双链(dC-dG)3和(dC-dG)4中B到Z跃迁的31P-NMR分析。

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摘要

In 4M NaCl solutions (dC-dG)n (n = 3,4; approximately 9 mM) exist as a mixture o +/- B and Z forms. The low and high field components of two 31P NMR resonances originating from internal phosphodiester groups are assigned to the GpC and CpG linkages, respectively. Low temperatures stabilize the Z-forms, which completely disappear above 50 degrees C (n = 3) and 65 degrees C (n = 4). delta H = -44 and -17 kJ/mol for B to Z transition in the hexamer and octamer duplexes, respectively. Temperature dependent changes (0-50 degrees C range) in the spin-lattice relaxation times at 145.7 MHz are distinctly different for the 31P nuclei o +/- GpC and CpG groups. The relaxation data can be explained by assuming that the GpC phosphodiester groups undergo more local internal motion than do the CpG groups.
机译:在4M NaCl溶液(dC-dG)n中(n = 3,4;大约9 mM)以+/- B和Z的混合物形式存在。来自内部磷酸二酯基的两个31P NMR共振的低场和高场分量分别分配给GpC和CpG键。低温稳定了Z形,Z形在50摄氏度(n = 3)和65摄氏度(n = 4)时完全消失。在六聚体和八聚体双链体中,B到Z的转变分别为δH = -44和-17 kJ / mol。对于31P核+/- GpC和CpG组,自旋晶格弛豫时间在145.7 MHz处的温度依赖性变化(0-50摄氏度范围)明显不同。可以通过假设GpC磷酸二酯基团比CpG基团经历更多的局部内部运动来解释弛豫数据。

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