首页> 美国卫生研究院文献>Nucleic Acids Research >Synthesis and characterization of oligodeoxyribonucleotides containing terminal phosphates. NMR UV spectroscopic and thermodynamic analysis of duplex formation of d(pGGAATTCC)2 d(GGAATTCCp)2 and d(pGGAATTCCp)2.
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Synthesis and characterization of oligodeoxyribonucleotides containing terminal phosphates. NMR UV spectroscopic and thermodynamic analysis of duplex formation of d(pGGAATTCC)2 d(GGAATTCCp)2 and d(pGGAATTCCp)2.

机译:含末端磷酸酯的寡脱氧核糖核苷酸的合成与表征。 d(pGGAATTCC) 2d(GGAATTCCp) 2和d(pGGAATTCCp) 2的双链体形成的NMRUV光谱和热力学分析。

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摘要

Derivatives of the oligomer [d(GGAATTCC)]2 with 5' (5'-P), 3' (3'-P) and both 5' and 3' (5',3'-P2) terminal phosphate groups have been synthesized and studied by temperature dependent UV and NMR spectroscopic methods. Thermodynamic studies of the helix to strand transition indicate that addition of 3' phosphate groups has very little effect on the delta G degree for helix formation at 37 degrees C while addition of 5' phosphate groups adds approximately -0.5 kcal/mole to the delta G degree for duplex formation. The helix stabilization by 5' phosphate groups occurs at salt concentrations of 0.1 M and above, and is primarily enthalpic in origin. Tm studies as a function of ionic strength also indicate that the oligomers fall into two groups with the parent and 3'-P derivatives being similar but less stable than the 5'-P and 5',3'-P2 derivatives. Imino proton and 31P NMR studies also divide the oligomers into these same two groups based on spectral comparisons and temperature induced chemical shift and linewidth changes. 31P NMR analysis suggests that addition of 5' phosphate groups results in a small change in phosphodiester torsional angles in the g,t to g,g direction, indicating improved base stacking at the 5' end of the modified oligomer. No such changes are seen at the 3' end of the oligomer on adding 3' phosphate groups.
机译:具有5'(5'-P),3'(3'-P)以及5'和3'(5',3'-P2)末端磷酸基的低聚物[d(GGAATTCC)] 2的衍生物通过依赖温度的UV和NMR光谱法合成和研究。螺旋向链过渡的热力学研究表明,添加3'磷酸基团对在37摄氏度形成螺旋的δG度几乎没有影响,而添加5'磷酸基团则对δG的影响约为-0.5 kcal / mol。双链体形成的程度。通过5'磷酸基团进行的螺旋稳定作用发生在盐浓度为0.1 M及更高的情况下,主要起源于焓。 Tm研究作为离子强度的函数还表明,低聚物分为两组,其母体和3'-P衍生物与5'-P和5',3'-P2衍生物相似,但稳定性较差。基于光谱比较和温度诱导的化学位移和线宽变化,Imino质子和31P NMR研究还将低聚物分为两组。 31 P NMR分析表明,添加5'磷酸基团会使g,t到g,g方向的磷酸二酯扭转角发生很小的变化,表明在改性低聚物的5'端碱基堆积得到改善。添加3'磷酸基团后,在低聚物的3'末端未见此类变化。

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