Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824, USA.
Chemical Biology Laboratory, Molecular Discovery Program, Center for Cancer Research, National Cancer Institute at Frederick, National Institutes of Health, Frederick, Maryland 21702, USA.
RNA. 2018 Nov;24(11):1542-1554. doi: 10.1261/rna.067579.118. Epub 2018 Aug 15.
In common with other self-cleaving RNAs, the lead-dependent ribozyme (leadzyme) undergoes dynamic fluctuations to a chemically activated conformation. We explored the connection between conformational dynamics and self-cleavage function in the leadzyme using a combination of NMR spin-relaxation analysis of ribose groups and conformational restriction via chemical modification. The functional studies were performed with a -methanocarbacytidine modification that prevents fluctuations to C2'-endo conformations while maintaining an intact 2'-hydroxyl nucleophile. Spin-relaxation data demonstrate that the active-site Cyt-6 undergoes conformational exchange attributed to sampling of a minor C2'-endo state with an exchange lifetime on the order of microseconds to tens of microseconds. A conformationally restricted species in which the fluctuations to the minor species are interrupted shows a drastic decrease in self-cleavage activity. Taken together, these data indicate that dynamic sampling of a minor species at the active site of this ribozyme, and likely of related naturally occurring motifs, is strongly coupled to catalytic function. The combination of NMR dynamics analysis with functional probing via conformational restriction is a general methodology for dissecting dynamics-function relationships in RNA.
与其他自我切割的 RNA 一样,依赖先导的核酶(leadzyme)会发生动态波动,从而形成化学激活构象。我们使用 NMR 糖基旋转弛豫分析与通过化学修饰进行构象限制相结合的方法,探索了先导酶构象动力学与自我切割功能之间的联系。功能研究是通过 -甲硫基胞苷修饰来进行的,该修饰可防止构象向 C2'-内消旋的波动,同时保持完整的 2'-羟基亲核试剂。自旋弛豫数据表明,活性位点 Cyt-6 发生构象交换,归因于以微秒到数十微秒量级的交换寿命对次要 C2'-内消旋状态进行采样。构象受到限制的物种中,次要物种的波动被打断,自我切割活性急剧下降。综上所述,这些数据表明,该核酶活性位点中次要物种的动态采样,以及可能与相关天然存在的基序,与催化功能密切相关。通过构象限制进行 NMR 动力学分析与功能探测相结合,是一种用于剖析 RNA 中动力学-功能关系的通用方法。