Stone M P, Winkle S A, Borer P N
Chemistry Department, University of California, Irvine.
J Biomol Struct Dyn. 1986 Feb;3(4):767-81. doi: 10.1080/07391102.1986.10508460.
The chemical shifts as well as the 13C-31P coupling constants of the carbon-13 nuclei in single-stranded ApApA, ApApG, and ApUpG are sensitive to sequence and temperature. ApApA and ApApG have similar properties with large shielding (up to 1.7 ppm) of many of the base carbons upon decreasing the temperature from 70 degrees C to 11 degrees C; the base carbons have smaller shielding changes in ApUpG. Large shielding and deshielding effects are observed for the 1', 3', 4' and 5'-carbons over this temperature range. Analysis of the 13C-31P couplings measured at the 4' ribose carbons show that the population of the anti rotamer about O5'-C5' varies from 98 to 75%, and is higher in ApApA and ApApG than in ApUpG. The CCOP coupling data at 2' and 4' is consistent with a blend of the -antiperiplanar/-synclinal nonclassical rotamers about the C3'-O3' bond, varying from 89/11% in ApApG to 55/45% in ApUpG. The coupling and chemical shift data support the thesis that ApUpG is stacked much less than the other two molecules. The stacked forms of all three trinucleotides is most easily interpreted by a standard A-RNA model. It is not necessary to invoke the "bulged base" hypothesis [Lee, C.-H. and Tinoco, Jr., I. (1981) Biophysical Chemistry 1, 283-294; Lankhorst, P.P., Wille, G., van Boom., J.H., Altona, C., and Haasnoot, C.A.G. (1983) Nucleic Acids Research 11, 2839-2856] to explain the contrast in 13C spectroscopic properties of ApUpG in comparison to ApApG and ApApA.
单链ApApA、ApApG和ApUpG中碳-13原子核的化学位移以及13C-31P耦合常数对序列和温度敏感。当温度从70℃降至11℃时,ApApA和ApApG具有相似的性质,许多碱基碳有较大的屏蔽作用(高达1.7 ppm);ApUpG中碱基碳的屏蔽变化较小。在这个温度范围内,1'、3'、4'和5'-碳观察到了较大的屏蔽和去屏蔽效应。对在4'核糖碳处测得的13C-31P耦合的分析表明,围绕O5'-C5'的反式构象异构体的比例从98%变化到75%,且在ApApA和ApApG中比在ApUpG中更高。2'和4'处的CCOP耦合数据与围绕C3'-O3'键的-反式共平面/-顺式倾斜非经典构象异构体的混合情况一致,从ApApG中的89/11%变化到ApUpG中的55/45%。耦合和化学位移数据支持这样的论点,即ApUpG的堆积程度远低于其他两个分子。所有三种三核苷酸的堆积形式最容易用标准的A-RNA模型来解释。没有必要援引“凸起碱基”假说[Lee, C.-H.和Tinoco, Jr., I.(1981年)《生物物理化学》1, 283 - 294;Lankhorst, P.P., Wille, G., van Boom., J.H., Altona, C.,和Haasnoot, C.A.G.(1983年)《核酸研究》11, 2839 - 2856]来解释ApUpG与ApApG和ApApA相比在13C光谱性质上的差异。