Kopeikin Zoia, Chen Shi-Jie
Department of Physics and Astronomy, University of Missouri, Columbia, Missouri 65211, USA.
J Chem Phys. 2006 Apr 21;124(15):154903. doi: 10.1063/1.2188940.
We develop a statistical mechanical framework for the folding thermodynamics of pseudoknotted structures. As applications of the theory, we investigate the folding stability and the free energy landscapes for both the thermal and the mechanical unfolding of pseudoknotted chains. For the mechanical unfolding process, we predict the force-extension curves, from which we can obtain the information about structural transitions in the unfolding process. In general, a pseudoknotted structure unfolds through multiple structural transitions. The interplay between the helix stems and the loops plays an important role in the folding stability of pseudoknots. For instance, variations in loop sizes can lead to the destabilization of some intermediate states and change the (equilibrium) folding pathways (e.g., two helix stems unfold either cooperatively or sequentially). In both thermal and mechanical unfolding, depending on the nucleotide sequence, misfolded intermediate states can emerge in the folding process. In addition, thermal and mechanical unfoldings often have different (equilibrium) pathways. For example, for certain sequences, the misfolded intermediates, which generally have longer tails, can fold, unfold, and refold again in the pulling process, which means that these intermediates can switch between two different average end-end extensions.
我们为假结结构的折叠热力学建立了一个统计力学框架。作为该理论的应用,我们研究了假结链热展开和机械展开的折叠稳定性及自由能景观。对于机械展开过程,我们预测了力-伸长曲线,从中可以获得展开过程中结构转变的信息。一般来说,假结结构通过多个结构转变展开。螺旋茎和环之间的相互作用在假结的折叠稳定性中起重要作用。例如,环大小的变化会导致一些中间状态的不稳定,并改变(平衡)折叠途径(例如,两个螺旋茎协同或依次展开)。在热展开和机械展开中,根据核苷酸序列,折叠过程中可能会出现错误折叠的中间状态。此外,热展开和机械展开通常具有不同的(平衡)途径。例如,对于某些序列,通常具有较长尾部的错误折叠中间体在拉伸过程中可以折叠、展开并再次折叠,这意味着这些中间体可以在两种不同的平均端到端伸长之间切换。