Fonseca Rasmus, Pachov Dimitar V, Bernauer Julie, van den Bedem Henry
AMIB Project, INRIA Saclay-Île de France, 1 rue Honoré d'Estienne d'Orves, Bâtiment Alan Turing, Campus de l'École Polytechnique, 91120 Palaiseau, France Laboratoire d'Informatique de l'École Polytechnique (LIX), CNRS UMR 7161, École Polytechnique, 91128 Palaiseau, France Department of Computer Science, University of Copenhagen, Nørre Campus, Universitetsparken 5, DK-2100 Copenhagen, Denmark.
Department of Chemistry, Stanford University, 333 Campus Dr., Stanford, CA 94305, USA.
Nucleic Acids Res. 2014 Sep;42(15):9562-72. doi: 10.1093/nar/gku707. Epub 2014 Aug 11.
Functional mechanisms of biomolecules often manifest themselves precisely in transient conformational substates. Researchers have long sought to structurally characterize dynamic processes in non-coding RNA, combining experimental data with computer algorithms. However, adequate exploration of conformational space for these highly dynamic molecules, starting from static crystal structures, remains challenging. Here, we report a new conformational sampling procedure, KGSrna, which can efficiently probe the native ensemble of RNA molecules in solution. We found that KGSrna ensembles accurately represent the conformational landscapes of 3D RNA encoded by NMR proton chemical shifts. KGSrna resolves motionally averaged NMR data into structural contributions; when coupled with residual dipolar coupling data, a KGSrna ensemble revealed a previously uncharacterized transient excited state of the HIV-1 trans-activation response element stem-loop. Ensemble-based interpretations of averaged data can aid in formulating and testing dynamic, motion-based hypotheses of functional mechanisms in RNAs with broad implications for RNA engineering and therapeutic intervention.
生物分子的功能机制通常精确地体现在瞬态构象亚状态中。长期以来,研究人员一直试图结合实验数据和计算机算法,对非编码RNA中的动态过程进行结构表征。然而,从静态晶体结构出发,对这些高度动态分子的构象空间进行充分探索仍然具有挑战性。在此,我们报告了一种新的构象采样程序KGSrna,它可以有效地探测溶液中RNA分子的天然系综。我们发现KGSrna系综准确地代表了由NMR质子化学位移编码的3D RNA的构象景观。KGSrna将运动平均的NMR数据解析为结构贡献;当与残余偶极耦合数据结合时,一个KGSrna系综揭示了HIV-1反式激活应答元件茎环以前未被表征的瞬态激发态。基于系综对平均数据的解释有助于制定和测试基于RNA功能机制的动态、基于运动的假设,这对RNA工程和治疗干预具有广泛的意义。