Hu W, Jiang L
Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
J Biomol NMR. 1999 Dec;15(4):289-93. doi: 10.1023/a:1008391007013.
A multiple-quantum 3D HCN-CCH-TOCSY experiment is presented for the assignment of RNA ribose resonances. The experiment makes use of the chemical shift dispersion of N1 of pyrimidine and N9 of purine to distinguish the ribose spin systems. It provides an alternative approach for the assignment of ribose resonances to the currently used COSY- and TOCSY-type experiments in which either 13C or 1H is utilized to distinguish the different spin systems. Compared to the single-quantum version, the sensitivity of the multiple-quantum HCN-CCH-TOCSY experiment is enhanced on average by a factor of 2 for a 23-mer RNA aptamer complexed with neomycin.
本文介绍了一种用于RNA核糖共振归属的多量子3D HCN-CCH-TOCSY实验。该实验利用嘧啶N1和嘌呤N9的化学位移分散来区分核糖自旋体系。它为核糖共振归属提供了一种替代方法,以取代目前使用的利用13C或1H区分不同自旋体系的COSY型和TOCSY型实验。与单量子版本相比,对于与新霉素复合的23聚体RNA适体,多量子HCN-CCH-TOCSY实验的灵敏度平均提高了2倍。