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盐依赖性RNA假结稳定性:空间限制的影响。

Salt-Dependent RNA Pseudoknot Stability: Effect of Spatial Confinement.

作者信息

Feng Chenjie, Tan Ya-Lan, Cheng Yu-Xuan, Shi Ya-Zhou, Tan Zhi-Jie

机构信息

Key Laboratory of Artificial Micro and Nano-structures of Ministry of Education, Center for Theoretical Physics, School of Physics and Technology, Wuhan University, Wuhan, China.

Research Center of Nonlinear Science, School of Mathematics and Computer Science, Wuhan Textile University, Wuhan, China.

出版信息

Front Mol Biosci. 2021 Apr 13;8:666369. doi: 10.3389/fmolb.2021.666369. eCollection 2021.

Abstract

Macromolecules, such as RNAs, reside in crowded cell environments, which could strongly affect the folded structures and stability of RNAs. The emergence of RNA-driven phase separation in biology further stresses the potential functional roles of molecular crowding. In this work, we employed the coarse-grained model that was previously developed by us to predict 3D structures and stability of the mouse mammary tumor virus (MMTV) pseudoknot under different spatial confinements over a wide range of salt concentrations. The results show that spatial confinements can not only enhance the compactness and stability of MMTV pseudoknot structures but also weaken the dependence of the RNA structure compactness and stability on salt concentration. Based on our microscopic analyses, we found that the effect of spatial confinement on the salt-dependent RNA pseudoknot stability mainly comes through the spatial suppression of extended conformations, which are prevalent in the partially/fully unfolded states, especially at low ion concentrations. Furthermore, our comprehensive analyses revealed that the thermally unfolding pathway of the pseudoknot can be significantly modulated by spatial confinements, since the intermediate states with more extended conformations would loss favor when spatial confinements are introduced.

摘要

诸如RNA之类的大分子存在于拥挤的细胞环境中,这可能会强烈影响RNA的折叠结构和稳定性。生物学中RNA驱动的相分离的出现进一步凸显了分子拥挤的潜在功能作用。在这项工作中,我们采用了先前开发的粗粒度模型,以预测在广泛的盐浓度范围内,不同空间限制条件下小鼠乳腺肿瘤病毒(MMTV)假结的三维结构和稳定性。结果表明,空间限制不仅可以增强MMTV假结结构的紧凑性和稳定性,还可以减弱RNA结构紧凑性和稳定性对盐浓度的依赖性。基于微观分析,我们发现空间限制对盐依赖性RNA假结稳定性的影响主要通过对伸展构象的空间抑制来实现,这些伸展构象在部分/完全未折叠状态中普遍存在,尤其是在低离子浓度下。此外,我们的综合分析表明,引入空间限制后,假结的热解折叠途径会受到显著调节,因为具有更多伸展构象的中间状态在引入空间限制时会变得不利。

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