Serianni A S, Bondo P B
Department of Chemistry and Biochemistry, University of Notre Dame, Indiana 46556.
J Biomol Struct Dyn. 1994 Apr;11(5):1133-48. doi: 10.1080/07391102.1994.10508056.
Current interest in the use of heteronuclear multidimensional NMR methods to assess the structures, conformations and/or dynamics of oligonucleotides in solution has created an immediate need for nucleosides and their derivatives labeled in various ways with stable isotopes (13C, 2H, 15N and/or 17,18O). This short review focuses exclusively on chemienzymic methods to introduce one or more 13C labels into D-ribose, a precursor to ribo- and 2'-deoxyribonucleosides. It will be demonstrated that five convenient reactions, applied in specific sequences, provide access to 26 of the 32 13C-labeled isotopomers of D-ribose in acceptable yields. While not explicitly discussed herein, these same reactions, appropriately modified, can also be used to insert one or more 2H and/or 17,18O isotopes into this aldopentose.
目前,人们对使用异核多维核磁共振方法来评估溶液中寡核苷酸的结构、构象和/或动力学有着浓厚兴趣,这使得人们迫切需要用稳定同位素(13C、2H、15N和/或17、18O)以各种方式标记的核苷及其衍生物。本简短综述专门聚焦于化学酶法,即将一个或多个13C标签引入D-核糖(核糖核苷和2'-脱氧核糖核苷的前体)的方法。将证明,按特定顺序应用的五个便捷反应能够以可接受的产率获得D-核糖32种13C标记的同位素异构体中的26种。虽然本文未明确讨论,但这些相同的反应经过适当修改后,也可用于将一个或多个2H和/或17、18O同位素插入到这种戊醛糖中。