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通过1H、13C、31P三共振实验(HCP-CCH-TOCSY)对RNA寡核苷酸中异头核糖质子与中间磷的顺序相关性研究

Sequential correlation of anomeric ribose protons and intervening phosphorus in RNA oligonucleotides by a 1H, 13C, 31P triple resonance experiment: HCP-CCH-TOCSY.

作者信息

Marino J P, Schwalbe H, Anklin C, Bermel W, Crothers D M, Griesinger C

机构信息

Department of Chemistry, Yale University, New Haven, CT 06511.

出版信息

J Biomol NMR. 1995 Jan;5(1):87-92. doi: 10.1007/BF00227473.

Abstract

A three-dimensional 1H, 13C, 31P triple resonance experiment, HCP-CCH-TOCSY, is presented which provides unambiguous through-bond correlation of all 1H ribose protons on the 5' and 3' sides of the intervening phosphorus along the backbone bonding network in 13C-labeled RNA oligonucleotides. The correlation of the complete ribose spin system to the intervening phosphorus is obtained by adding a C,C-TOCSY coherence transfer step to the triple resonance HCP experiment. The C,C-TOCSY transfer step, which utilizes the large and relatively uniform 1J(C,C) coupling constant (approximately 40 Hz for ribose carbons), efficiently correlates the phosphorus-coupled carbons observed in the HCP correlation experiment (i.e., C4' and C5' in the 5' direction and C4' and C3' in the 3' direction) to all other carbons in the ribose spin system. Of the additional correlations observed in the HCP-CCH-TOCSY, that to the relatively well-resolved anomeric H1',C1' resonance pairs provides the greatest gain in terms of facilitating assignment. The gain in spectral resolution afforded by chemical shift labeling with the anomeric resonances should provide a more robust pathway for sequential assignment over the intervening phosphorus in larger RNA oligonucleotides. The HCP-CCH-TOCSY experiment is demonstrated on a uniformly 13C, 15N-labeled 19-nucleotide RNA stem-loop, derived from the antisense RNA I molecule found in the ColE1 plasmid replication control system.

摘要

本文介绍了一种三维1H、13C、31P三共振实验,即HCP-CCH-TOCSY,它能在13C标记的RNA寡核苷酸中,沿着主链键合网络,明确地实现中间磷原子5'和3'侧所有1H核糖质子的键连相关。通过在三共振HCP实验中加入一个C,C-TOCSY相干转移步骤,可实现完整核糖自旋系统与中间磷原子的相关。C,C-TOCSY转移步骤利用了较大且相对均匀的1J(C,C)耦合常数(核糖碳的约为40 Hz),有效地将HCP相关实验中观察到的与磷耦合的碳(即5'方向的C4'和C5'以及3'方向的C4'和C3')与核糖自旋系统中的所有其他碳相关联。在HCP-CCH-TOCSY中观察到的额外相关中,与相对分辨率较好的异头H1'、C1'共振对的相关在促进归属方面提供了最大的帮助。异头共振的化学位移标记所带来的光谱分辨率提高,应为更大的RNA寡核苷酸中跨越中间磷原子的序列归属提供一条更可靠的途径。在源自ColE1质粒复制控制系统中发现的反义RNA I分子的均匀13C、15N标记的19核苷酸RNA茎环上展示了HCP-CCH-TOCSY实验。

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