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预测RNA假结折叠热力学

Predicting RNA pseudoknot folding thermodynamics.

作者信息

Cao Song, Chen Shi-Jie

机构信息

Department of Physics, University of Missouri-Columbia Columbia, MO 65211, USA.

出版信息

Nucleic Acids Res. 2006 May 18;34(9):2634-52. doi: 10.1093/nar/gkl346. Print 2006.

Abstract

Based on the experimentally determined atomic coordinates for RNA helices and the self-avoiding walks of the P (phosphate) and C4 (carbon) atoms in the diamond lattice for the polynucleotide loop conformations, we derive a set of conformational entropy parameters for RNA pseudoknots. Based on the entropy parameters, we develop a folding thermodynamics model that enables us to compute the sequence-specific RNA pseudoknot folding free energy landscape and thermodynamics. The model is validated through extensive experimental tests both for the native structures and for the folding thermodynamics. The model predicts strong sequence-dependent helix-loop competitions in the pseudoknot stability and the resultant conformational switches between different hairpin and pseudoknot structures. For instance, for the pseudoknot domain of human telomerase RNA, a native-like and a misfolded hairpin intermediates are found to coexist on the (equilibrium) folding pathways, and the interplay between the stabilities of these intermediates causes the conformational switch that may underlie a human telomerase disease.

摘要

基于实验测定的RNA螺旋的原子坐标以及多核苷酸环构象在金刚石晶格中磷(P)原子和C4(碳)原子的自回避行走,我们推导出了一组RNA假结的构象熵参数。基于这些熵参数,我们开发了一个折叠热力学模型,该模型使我们能够计算序列特异性的RNA假结折叠自由能景观和热力学。该模型通过针对天然结构和折叠热力学的广泛实验测试得到了验证。该模型预测了假结稳定性中强烈的序列依赖性螺旋-环竞争以及不同发夹和假结结构之间的构象转换。例如,对于人类端粒酶RNA的假结结构域,发现在(平衡)折叠途径上存在类似天然的和错误折叠的发夹中间体,并且这些中间体稳定性之间的相互作用导致了构象转换,这可能是人类端粒酶疾病的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6e7/1463895/a18a831105cf/gkl346f1.jpg

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