Liquier J, Taillandier E, Klinck R, Guittet E, Gouyette C, Huynh-Dinh T
Laboratoire CSSB, URA CNRS 1430, UFR de Médecine, Université Paris Nord, Bobigny, France.
Nucleic Acids Res. 1995 May 25;23(10):1722-8. doi: 10.1093/nar/23.10.1722.
Fourier transform infrared (FTIR), UV absorption and exchangeable proton NMR spectroscopies have been used to study the formation and stability of two intramolecular pH-dependent triple helices composed by a chimeric 29mer DNA-RNA (DNA double strand and RNA third strand) or by the analogous 29mer RNA. In both cases decrease of pH induces formation of a triple helical structure containing either rU*dA.dT and rC+dG.dC or rUrA.rU and rC+*rG.rC triplets. FTIR spectroscopy shows that exclusively N-type sugars are present in the triple helix formed by the 29mer RNA while both N- and S-type sugars are detected in the case of the chimeric 29mer DNA-RNA triple helix. Triple helix formation with the third strand RNA and the duplex as DNA appears to be associated with the conversion of the duplex part from a B-form secondary structure to one which contains partly A-form sugars. Thermal denaturation experiments followed by UV spectroscopy show that a major stabilization occurs upon formation of the triple helices. Monophasic melting curves indicate a simultaneous disruption of the Hoogsteen and Watson-Crick hydrogen bonds in the intramolecular triplexes when the temperature is increased. This is in agreement with imino proton NMR spectra recorded as a function of temperature. Comparison with experiments concerning intermolecular triplexes of identical base and sugar composition shows the important role played by the two tetrameric loops in the stabilization of the intramolecular triple helices studied.
傅里叶变换红外光谱(FTIR)、紫外吸收光谱和可交换质子核磁共振光谱已被用于研究由嵌合的29聚体DNA-RNA(DNA双链和RNA第三条链)或类似的29聚体RNA组成的两种分子内pH依赖性三链螺旋的形成和稳定性。在这两种情况下,pH值降低都会诱导形成包含rU*dA.dT和rC+dG.dC或rUrA.rU和rC+*rG.rC三联体的三链螺旋结构。FTIR光谱表明,由29聚体RNA形成的三链螺旋中仅存在N型糖,而在嵌合的29聚体DNA-RNA三链螺旋的情况下,同时检测到N型和S型糖。第三条链为RNA且双链为DNA时形成的三链螺旋似乎与双链部分从B型二级结构转变为部分包含A型糖的结构有关。紫外光谱跟踪的热变性实验表明,三链螺旋形成时会发生主要的稳定作用。单相熔解曲线表明,当温度升高时,分子内三链体中的Hoogsteen氢键和Watson-Crick氢键会同时断裂。这与作为温度函数记录的亚氨基质子核磁共振光谱一致。与关于相同碱基和糖组成的分子间三链体的实验比较表明,所研究的分子内三链螺旋的稳定中两个四聚体环起到了重要作用。