Romaniuk P J, Hughes D W, Grégoire R J, Bell R A, Neilson T
Biochemistry. 1979 Nov 13;18(23):5109-16. doi: 10.1021/bi00590a013.
Proton nuclear magnetic resonance has been used to examine the effect of both noncomplementary and G.U oppositions in the duplexes formed by the synthetic pentaribonucleotides CpApApUpG, CpApUpUpG, CpApGpUpG, and CpApCpUpG. The lack of any sigmoidal behavior in the chemical shift vs. temperature plots of the base protons in the individual pentaribonucleotides indicates that duplexes with noncomplementary base oppositions of the type: formula: (see text), (where X = A, U, G, or C) do not form. Variable temperature spectra of the mixture of CpApGpUpG and CpApUpUpG were recorded over the range of 70--10 degrees C. The chemical shift vs. temperature plot of the purine aromatic protons displayed sigmoidal curves. This demonstrated both duplex formation and the presence of a G.U. base pair. The average Tm of the duplex was found to be 23.4 +/- 2.0 degrees C. This is similar to that of the duplex formed by CpApUpG (24.0 +/- 1.0 degrees C) but less than the Tm of the following duplexes: CpApApUpG:CpApUpUpG (Tm = 28.5 +/- 2.1 degrees C), CpApGpUpG:CpApCpUpG (Tm = 38.4 +/- 0.6 degrees C) and CpApUpApUpG (Tm = 41.5 +/- 1.1 degrees C). The G.U base pair has a Tm (20.0 degrees C) significantly lower than the rest of the duplex (24 +/- 1 degree C) and is a region of local instability within the double helix. This 1H NMR study is the first to investigate both the formation and relative stability of an internal G.U. base pair neighboring regular Watson--Crick base pairs.
质子核磁共振已被用于研究由合成的五核糖核苷酸 CpApApUpG、CpApUpUpG、CpApGpUpG 和 CpApCpUpG 形成的双链体中不互补和 G·U 配对的影响。单个五核糖核苷酸中碱基质子的化学位移与温度关系图中缺乏任何 S 形行为,这表明具有以下类型不互补碱基配对的双链体:公式:(见文本),(其中 X = A、U、G 或 C)不会形成。在 70 - 10℃范围内记录了 CpApGpUpG 和 CpApUpUpG 混合物的变温光谱。嘌呤芳香族质子的化学位移与温度关系图显示出 S 形曲线。这证明了双链体的形成以及 G·U 碱基对的存在。发现双链体的平均熔解温度为 23.4 ± 2.0℃。这与由 CpApUpG 形成的双链体(24.0 ± 1.0℃)相似,但低于以下双链体的熔解温度:CpApApUpG:CpApUpUpG(熔解温度 = 28.5 ± 2.1℃)、CpApGpUpG:CpApCpUpG(熔解温度 = 38.4 ± 0.6℃)和 CpApUpApUpG(熔解温度 = 41.5 ± 1.1℃)。G·U 碱基对的熔解温度(20.0℃)明显低于双链体的其余部分(24 ± 1℃),并且是双螺旋内局部不稳定的区域。这项¹H NMR 研究首次研究了与常规沃森 - 克里克碱基对相邻的内部 G·U 碱基对的形成和相对稳定性。