化学
DNA
吡啶
堆积
离子强度
溶剂
变性(裂变材料)
碱基
渗透压
碱基对
结晶学
有机化学
生物化学
水溶液
核化学
作者
Guillem Portella,Montserrat Terrazas,Núria Villegas,Carlos González,Modesto Orozco
标识
DOI:10.1002/anie.201503770
摘要
The stability of DNA is highly dependent on the properties of the surrounding solvent, such as ionic strength, pH, and the presence of denaturants and osmolytes. Addition of pyridine is known to unfold DNA by replacing π-π stacking interactions between bases, stabilizing conformations in which the nucleotides are solvent exposed. We show here experimental and theoretical evidences that pyridine can change its role and in fact stabilize the DNA under acidic conditions. NMR spectroscopy and MD simulations demonstrate that the reversal in the denaturing role of pyridine is specific, and is related to its character as pseudo groove binder. The present study sheds light on the nature of DNA stability and on the relationship between DNA and solvent, with clear biotechnological implications.
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