Escudé C, François J C, Sun J S, Ott G, Sprinzl M, Garestier T, Hélène C
Laboratoire de Biophysique, Muséum National d'Histoire Naturelle, INSERM U201, CNRS UA481, Paris, France.
Nucleic Acids Res. 1993 Dec 11;21(24):5547-53. doi: 10.1093/nar/21.24.5547.
UV-absorption spectrophotometry and molecular modeling have been used to study the influence of the chemical nature of sugars (ribose or deoxyribose) on triple helix stability. For the Pyrimidine.purine* Pyrimidine motif, all eight combinations were tested with each of the three strands composed of either DNA or RNA. The chemical nature of sugars has a dramatic influence on triple helix stability. For each double helix composition, a more stable triple helix was formed when the third strand was RNA rather than DNA. No stable triple helix was detected when the polypurine sequence was made of RNA with a third strand made of DNA. Energy minimization studies using the JUMNA program suggested that interactions between the 2'-hydroxyl group of the third strand and the phosphates of the polypurine strand play an important role in determining the relative stabilities of triple-helical structures in which the polypyrimidine third strand is oriented parallel to the polypurine sequence. These interactions are not allowed when the third strand adopts an antiparallel orientation with respect to the target polypurine sequence, as observed when the third strand contains G and A or G and T/U. We show by footprinting and gel retardation experiments that an oligoribonucleotide containing G and A or G and U fails to bind double helical DNA, while the corresponding DNA oligomers form stable triple-helical complexes.
紫外吸收分光光度法和分子建模已被用于研究糖(核糖或脱氧核糖)的化学性质对三链螺旋稳定性的影响。对于嘧啶·嘌呤*嘧啶基序,对由DNA或RNA组成的三条链中的每一条链都测试了所有八种组合。糖的化学性质对三链螺旋稳定性有显著影响。对于每种双螺旋组成,当第三条链是RNA而不是DNA时,会形成更稳定的三链螺旋。当多嘌呤序列由RNA构成且第三条链由DNA构成时,未检测到稳定的三链螺旋。使用JUMNA程序进行的能量最小化研究表明,第三条链的2'-羟基与多嘌呤链的磷酸之间的相互作用在确定三链螺旋结构的相对稳定性中起重要作用,其中多嘧啶第三条链与多嘌呤序列平行排列。当第三条链相对于目标多嘌呤序列采取反平行取向时,如在第三条链包含G和A或G和T/U时所观察到的,这些相互作用是不允许的。我们通过足迹法和凝胶阻滞实验表明,含有G和A或G和U的寡核糖核苷酸不能结合双螺旋DNA,而相应的DNA寡聚物形成稳定的三链螺旋复合物。