Guzmán M Romero, Liquier J, Brahmachari S K, Taillandier E
Laboratoire BioMoCeTi, UMR CNRS 7033, Université Paris 13, 74, rue Marcel Cachin, F93017 Bobigny Cedex, France.
Spectrochim Acta A Mol Biomol Spectrosc. 2006 May 15;64(2):495-503. doi: 10.1016/j.saa.2005.07.049. Epub 2005 Dec 27.
A series of G-rich oligonucleotides able to form tetraplexes has been studied by FTIR spectroscopy. Characteristic markers of the formation of guanine tetrads are given. Moreover, we propose a new marker discriminating between parallel and antiparallel tetraplexes: the position of the C6O6 guanine carbonyl stretching vibration. In intermolecular parallel tetrameric structures formed by four separate strands this absorption is observed at 1693 cm-1 while for antiparallel tetrameric structures, either intramolecular or formed by dimerization of hairpins, this vibrational mode is observed at 1682 cm-1. These shifts to higher wavenumbers, when compared to the position of a free guanine C6O6 carbonyl stretching vibration observed at 1666 cm-1(Deltanu=27 cm-1 for parallel tetraplexes and Deltanu=16 cm-1 for antiparallel tetraplexes) reflect different strand orientations in the structures. This marker has been used to evidence the possibility of an antiparallel-parallel tetraplex reorganization for Oxytricha nova d(G4T4G4) and d((G4T4)3G4) and human d(G3T2AG3) telomeric sequences induced by Na+/K+ or Na+/Ca2+ ion exchange. Formation of the guanine tetrads, characterization of the phosphate geometries and of the sugar conformations have also been obtained by FTIR for the different tetraplexes.
通过傅里叶变换红外光谱(FTIR)对一系列能够形成四链体的富含鸟嘌呤的寡核苷酸进行了研究。给出了鸟嘌呤四联体形成的特征标记。此外,我们提出了一种区分平行和反平行四链体的新标记:C6O6鸟嘌呤羰基伸缩振动的位置。在由四条独立链形成的分子间平行四聚体结构中,该吸收出现在1693 cm-1处,而对于反平行四聚体结构,无论是分子内的还是由发夹二聚化形成的,该振动模式出现在1682 cm-1处。与在1666 cm-1处观察到的游离鸟嘌呤C6O6羰基伸缩振动位置相比(平行四链体的Δν = 27 cm-1,反平行四链体的Δν = 16 cm-1),这些向更高波数的位移反映了结构中不同的链取向。该标记已被用于证明新小杆线虫d(G4T4G4)、d((G4T4)3G4)和人类d(G3T2AG3)端粒序列在Na+/K+或Na+/Ca2+离子交换诱导下反平行-平行四链体重组的可能性。通过FTIR还获得了不同四链体的鸟嘌呤四联体形成、磷酸几何结构和糖构象的表征。