Tolbert Blanton S, Kennedy Scott D, Schroeder Susan J, Krugh Thomas R, Turner Douglas H
Department of Biochemistry and Biophysics, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
Biochemistry. 2007 Feb 13;46(6):1511-22. doi: 10.1021/bi061350m. Epub 2007 Jan 20.
The NMR structures of [see text] and [see text] are reported. The internal loop, [see text], is about 2 kcal/mol more stable than [see text] at 37 degrees C. The duplexes assemble into similar global folds characterized by the formation of tandem sheared GA pairs. The different stabilities of the loops are accompanied by differences in the local structure of the closing GU pairs. In the [see text] internal loop, the GU pairs form canonical wobble configurations with two hydrogen bonds, whereas in [see text], the GU pairs form a single hydrogen bond involving the amino group, GH22, and the carbonyl group, UO4. This pairing is similar to the GU closing pair of the 690 hairpin loop found in E. coli 16S rRNA. The [see text] and [see text] structures reveal how the subtle interplay between stacking and hydrogen bonding determines sequence dependent conformation and thermodynamic stability. Thus, this work provides structural and thermodynamic benchmarks for theoreticians in the ongoing effort to understand the sequence dependence of RNA physicochemical properties.
报道了[见原文]和[见原文]的核磁共振结构。内部环[见原文]在37℃时比[见原文]稳定约2千卡/摩尔。双链体组装成相似的整体折叠结构,其特征是形成串联剪切GA对。环的不同稳定性伴随着闭合GU对局部结构的差异。在[见原文]内部环中,GU对形成具有两个氢键的典型摆动构型,而在[见原文]中,GU对形成涉及氨基(GH22)和羰基(UO4)的单个氢键。这种配对类似于在大肠杆菌16S rRNA中发现的690发夹环的GU闭合对。[见原文]和[见原文]结构揭示了堆积和氢键之间的微妙相互作用如何决定序列依赖性构象和热力学稳定性。因此,这项工作为理论学家在持续努力理解RNA物理化学性质的序列依赖性方面提供了结构和热力学基准。