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自互补dG-dG-dA-dA-dT-dT-dC-dC双链体的螺旋-卷曲转变

Helix-coil transition of the self-complementary dG-dG-dA-dA-dT-dT-dC-dC duplex.

作者信息

Patel D J, Canuel L L

出版信息

Eur J Biochem. 1979 May 15;96(2):267-76. doi: 10.1111/j.1432-1033.1979.tb13037.x.

Abstract

The helix-coil transition of the octanucleotide self-complementary duplex dG-dG-dA-dA-dT-dT-dC-dC has been monitored at the Watson-Crick protons, the base and sugar nonexchangeable protons and the backbone phosphates by high-resolution nuclear magnetic resonance (NMR) spectroscopy. The melting transition of the octanucleotide monitored by ultraviolet absorbance spectroscopy is characterized by the thermodynamic parameters delta H degree = -216.7 kJ/mol and delta S degree (25 degrees C) = -0.632 KJ mol-1 K-1 in 0.1 M NaCl, 10 mM phosphate solution. Correlation of the transition midpoint values monitored by the ultraviolet absorbance studies at strand concentrations below 0.2 mM and by NMR studies at 5.3 mM suggest that both methods are monitoring the octanucleotide duplex-to-strand transition. The NMR spectra of the Watson-Crick ring NH protons of the octanucleotide duplex have been followed as a function of temperature. The resonance from the terminal dG.dC base pairs broadens out at room temperature while the resonances from the other base pairs broaden simultaneously with the onset of the melting transition. The nonexchangeable base and sugar H-1' protons are resolved in the duplex and strand states and shift as average peaks through the melting transition. The experimental shifts on duplex formation have been compared with calculated values based on ring-current and atomic diamagnetic anisotropy contributions for a B-DNA base-pair-overlap geometry in solution. Several nonexchangeable proton resonances broaden in the fast-exchange region during the duplex-to-strand transition and the excess widths yield a duplex dissociation rate constant for the octanucleotide of 1.9 x 10(3) s-1 at 32 degrees C (fraction of duplex = 0.86) in 0.1 M NaCl, 10 mM phosphate buffer. The 31P resonances of the seven internucleotide phosphates are distributed over 0.6 ppm in the duplex state, shift downfield during the duplex-to-strand transition and undergo additional downfield shifts during the stacked-to-unstacked strand transition with increasing temperature.

摘要

通过高分辨率核磁共振(NMR)光谱,在沃森-克里克质子、碱基和糖的非交换质子以及主链磷酸基团处监测了八核苷酸自互补双链体dG-dG-dA-dA-dT-dT-dC-dC的螺旋-线圈转变。通过紫外吸收光谱监测的八核苷酸的熔解转变,在0.1M NaCl、10mM磷酸盐溶液中的热力学参数为ΔH° = -216.7 kJ/mol和ΔS°(25℃) = -0.632 KJ mol⁻¹ K⁻¹。在链浓度低于0.2mM时通过紫外吸收研究监测的转变中点值与在5.3mM时通过NMR研究监测的转变中点值的相关性表明,两种方法都在监测八核苷酸双链体到单链的转变。八核苷酸双链体的沃森-克里克环NH质子的NMR光谱已作为温度的函数进行跟踪。末端dG·dC碱基对的共振在室温下变宽,而其他碱基对的共振在熔解转变开始时同时变宽。非交换碱基和糖的H-1'质子在双链体和单链状态下可分辨,并在熔解转变过程中作为平均峰移动。已将双链体形成时的实验位移与基于溶液中B-DNA碱基对重叠几何结构的环电流和原子抗磁各向异性贡献的计算值进行了比较。在双链体到单链的转变过程中,几个非交换质子共振在快速交换区域变宽,并且在0.1M NaCl、10mM磷酸盐缓冲液中,32℃时(双链体分数 = 0.86)八核苷酸的过量宽度产生双链体解离速率常数为1.9×10³ s⁻¹。七个核苷酸间磷酸基团的³¹P共振在双链体状态下分布在0.6 ppm范围内,在双链体到单链的转变过程中向低场移动,并在随着温度升高的堆积到未堆积单链的转变过程中经历额外的低场移动。

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