Maier Timm, Przylas Ingo, Strater Norbert, Herdewijn Piet, Saenger Wolfram
Institut für Chemie der Freien Universität Berlin, Takustrasse 6, 14195 Berlin, Germany.
J Am Chem Soc. 2005 Mar 9;127(9):2937-43. doi: 10.1021/ja045843v.
The crystal structure of a decameric HNA/RNA (HNA = 2',3'-dideoxy-1',5'-anhydro-d-arabinohexitol nucleic acid) hybrid with the RNA sequence 5'-GGCAUUACGG-3' is the first crystal structure of a hybrid duplex between a naturally occurring nucleic acid and a strand, which is fully modified to contain a six-membered ring instead of ribose. The presence of four duplex helices in the asymmetric unit allows for a detailed discussion of hydration, which revealed a tighter spinelike backbone hydration for the HNA- than for the RNA-strands. The reinforced backbone hydration is suggested to contribute significantly to the exceptional stability of HNA-containing duplexes and might be one of the causes for the evolutionary preference for ribose-derived nucleic acids.
一种与RNA序列5'-GGCAUUACGG-3'形成的十聚体HNA/RNA(HNA = 2',3'-二脱氧-1',5'-脱水-d-阿拉伯己糖醇核酸)杂交体的晶体结构,是天然存在的核酸与一条完全修饰为含有六元环而非核糖的链之间杂交双链体的首个晶体结构。不对称单元中四个双链螺旋的存在使得能够对水合作用进行详细讨论,结果表明HNA链的主链水合作用比RNA链的更紧密,呈类似螺旋状。主链水合作用的增强被认为对含HNA双链体的异常稳定性有显著贡献,并且可能是核糖衍生核酸在进化中受到偏好的原因之一。