Janke Eline M Basílio, Weisz Klaus
Institut für Chemie, Freie Universität Berlin, Takustrasse 3, D-14195 Berlin, Germany.
J Phys Chem A. 2007 Dec 6;111(48):12136-40. doi: 10.1021/jp076429v. Epub 2007 Nov 10.
Low-temperature NMR experiments were performed on mixtures of adenine nucleosides and aspartic acid derivatives in a freonic solvent. By acquiring spectra at temperatures as low as 123 K, the regime of slow hydrogen bond exchange is reached and hydrogen-bonded complexes can be characterized in detail. With 2'-deoxyadenosine lacking a 2'-substituent, N-Boc-protected aspartic acid benzyl ester binds through its carboxylic acid side chain to the Watson-Crick site of the adenine base, forming a strong hydrogen bond with the proton located close to the center between the oxygen donor and adenine N1 nitrogen acceptor. However, in the case of 2'-O-silylated adenine ribofuranosides, noncovalent interactions of the 2'-substituent with protecting groups on the amino acid shift the binding mode toward a Hoogsteen geometry with only a moderately strong hydrogen bond involving adenine N7.
在氟利昂溶剂中对腺嘌呤核苷和天冬氨酸衍生物的混合物进行了低温核磁共振实验。通过在低至123 K的温度下采集光谱,达到了氢键缓慢交换的状态,并且可以详细表征氢键复合物。对于缺少2'-取代基的2'-脱氧腺苷,N-叔丁氧羰基保护的天冬氨酸苄酯通过其羧酸侧链与腺嘌呤碱基的沃森-克里克位点结合,与位于氧供体和腺嘌呤N1氮受体之间中心附近的质子形成强氢键。然而,在2'-O-硅烷基化的腺嘌呤核糖呋喃糖苷的情况下,2'-取代基与氨基酸上保护基团的非共价相互作用使结合模式朝着 hoogsteen 几何结构转变,仅涉及腺嘌呤N7的中等强度氢键。