Cavailles J A, Neumann J M, Taboury J, Langlois d'Estaintot B, Huynh-Dinh T, Igolen J, Tran-Dinh S
Service de Biophysique Department de Biologie, Centre d'Etudes Nucléaires de Saclay, Gif-sur-Yvette, France.
J Biomol Struct Dyn. 1984 Jun;1(6):1347-71. doi: 10.1080/07391102.1984.10507525.
The helical structures of d(C-G-m5C-G-C-G) were studied in aqueous solution at various salt concentrations and temperatures by CD and 1H-NMR spectroscopy. At room temperature only the B form is observed in 0.1 M NaCl whereas the B and Z forms are simultaneously present in 1.8 M NaCl. At high salt concentration (4 M NaCl) the Z form is largely predominant (greater than 95%). The Z form proton resonances were assigned by using the polarisation transfer method (between B and Z at 1.8 M NaCl) and by proton-proton decoupling (at high salt concentration). The Z-B-Coil transitions were studied as a function of temperature with the 1.8 M NaCl solution. At high temperature (95 degrees C) only the coil form (S) is present. Below 55 degrees C the coil proportion is negligible, and the B-Z exchange is slow. The disappearance of the coil gives rise at first to the B form and on lowering the temperature the Z proportion increases to the detriment of the B form. Proton linewidth, relaxation and polarisation transfer studies confirm the conclusion in the previous report on d(m5C-G-C-G-m5C-G) (Tran-Dinh et al Biochemistry 1984 in the press) that Z exchanges only with B whereas the latter also exchanges with S,Z in equilibrium B in equilibrium S. The present data show that even at high salt concentration where only the Z form of d(C-G-m5C-G-C-G) is observed the Z-S transition also passes through the B form as an intermediate stage. The B-Z transition takes place when the Watson-Crick hydrogen bonds are firmly maintained and is greatly favoured when there are three hydrogen bonds between the base-pairs.
通过圆二色光谱(CD)和核磁共振氢谱(1H-NMR),研究了d(C-G-m5C-G-C-G)的螺旋结构在不同盐浓度和温度的水溶液中的情况。室温下,在0.1M氯化钠溶液中仅观察到B型结构,而在1.8M氯化钠溶液中B型和Z型结构同时存在。在高盐浓度(4M氯化钠)下,Z型结构占主导地位(超过95%)。通过极化转移方法(在1.8M氯化钠溶液中B型和Z型之间)和质子-质子去耦(在高盐浓度下)确定了Z型结构的质子共振。以1.8M氯化钠溶液研究了Z-B-无规卷曲转变与温度的关系。在高温(95℃)下仅存在无规卷曲形式(S)。在55℃以下,无规卷曲的比例可忽略不计,且B-Z交换缓慢。无规卷曲的消失首先产生B型结构,随着温度降低,Z型结构的比例增加,B型结构减少。质子线宽、弛豫和极化转移研究证实了之前关于d(m5C-G-C-G-m5C-G)的报告(Tran-Dinh等人,《生物化学》,1984年,即将发表)中的结论,即Z型结构仅与B型结构交换,而B型结构还与S型、Z型结构在B⇌S平衡中进行交换。目前的数据表明,即使在仅观察到d(C-G-m5C-G-C-G)的Z型结构的高盐浓度下,Z-S转变也以B型结构作为中间阶段。当沃森-克里克氢键牢固维持时发生B-Z转变,当碱基对之间存在三个氢键时,这种转变极为有利。