Ma Hairong, Proctor David J, Kierzek Elzbieta, Kierzek Ryszard, Bevilacqua Philip C, Gruebele Martin
Center for Biophysics and Computational Biology, Department of Chemistry and Department of Physics, University of Illinois, Urbana, Illinois 61801, USA.
J Am Chem Soc. 2006 Feb 8;128(5):1523-30. doi: 10.1021/ja0553856.
The energy landscape of a small RNA tetraloop hairpin is explored by temperature jump kinetics and base-substitution. The folding kinetics are single-exponential near the folding transition midpoint T(m). An additional fast phase appears below the midpoint, and an additional slow phase appears above the midpoint. Stem mutation affects the high-temperature phase, while loop mutation affects the low-temperature phase. An adjusted 2-D lattice model reproduces the temperature-dependent phases, although it oversimplifies the structural interpretation. A four-state free energy landscape model is generated based on the lattice model. This model explains the thermodynamics and multiphase kinetics over the full temperature range of the experiments. An analysis of three variants shows that one of the intermediate RNA structures is a stacking-related trap affected by stem but not loop modification, while the other is an early intermediate that forms some stem and loop structure. Even a very fast-folding 8-mer RNA with an ideal tetraloop sequence has a rugged energy landscape, ideal for testing analytical and computational models.
通过温度跳跃动力学和碱基取代研究了小RNA四环发夹的能量景观。在折叠转变中点T(m)附近,折叠动力学为单指数形式。在中点以下出现一个额外的快速相,在中点以上出现一个额外的慢速相。茎突变影响高温相,而环突变影响低温相。一个经过调整的二维晶格模型再现了温度依赖相,尽管它过度简化了结构解释。基于晶格模型生成了一个四态自由能景观模型。该模型解释了实验整个温度范围内的热力学和多相动力学。对三个变体的分析表明,其中一个中间RNA结构是受茎修饰而非环修饰影响的与堆积相关的陷阱,而另一个是形成一些茎和环结构的早期中间体。即使是具有理想四环序列的非常快速折叠的8聚体RNA也具有崎岖的能量景观,非常适合测试分析和计算模型。