Center for Theoretical Biological Physics, & Department of Physics and Astronomy, Rice University, Houston, Texas, United States of America.
Department of Chemistry, & Department of Biosciences, Rice University, Houston, Texas, United States of America.
PLoS Comput Biol. 2023 Mar 27;19(3):e1011013. doi: 10.1371/journal.pcbi.1011013. eCollection 2023 Mar.
A model for DNA and nucleosomes is introduced with the goal of studying chromosomes from a single base level all the way to higher-order chromatin structures. This model, dubbed the Widely Editable Chromatin Model (WEChroM), reproduces the complex mechanics of the double helix including its bending persistence length and twisting persistence length, and the temperature dependence of the former. The WEChroM Hamiltonian is composed of chain connectivity, steric interactions, and associative memory terms representing all remaining interactions leading to the structure, dynamics, and mechanical characteristics of the B-DNA. Several applications of this model are discussed to demonstrate its applicability. WEChroM is used to investigate the behavior of circular DNA in the presence of positive and negative supercoiling. We show that it recapitulates the formation of plectonemes and of structural defects that relax mechanical stress. The model spontaneously manifests an asymmetric behavior with respect to positive or negative supercoiling, similar to what was previously observed in experiments. Additionally, we show that the associative memory Hamiltonian is also capable of reproducing the free energy of partial DNA unwrapping from nucleosomes. WEChroM is designed to emulate the continuously variable mechanical properties of the 10nm fiber and, by virtue of its simplicity, is ready to be scaled up to molecular systems large enough to investigate the structural ensembles of genes. WEChroM is implemented in the OpenMM simulation toolkits and is freely available for public use.
引入了一种用于 DNA 和核小体的模型,旨在从单个碱基水平到更高阶的染色质结构研究染色体。这个模型被称为广泛可编辑染色质模型(WEChroM),复制了双螺旋的复杂力学特性,包括其弯曲持久性和扭转持久性,以及前者的温度依赖性。WEChroM 哈密顿量由链连接、立体相互作用和代表导致 B-DNA 结构、动力学和力学特性的所有剩余相互作用的联想记忆项组成。讨论了该模型的几个应用,以证明其适用性。WEChroM 用于研究正超螺旋和负超螺旋存在时圆形 DNA 的行为。我们表明,它再现了发夹的形成和结构缺陷的形成,这些缺陷可以缓解机械应力。该模型自发地表现出相对于正超螺旋或负超螺旋的不对称行为,类似于先前在实验中观察到的行为。此外,我们表明,联想记忆哈密顿量也能够再现从核小体部分解开 DNA 的自由能。WEChroM 旨在模拟 10nm 纤维的连续变化的力学性能,并且由于其简单性,已经准备好扩展到足以研究基因结构集合的足够大的分子系统。WEChroM 在 OpenMM 模拟工具包中实现,并免费供公众使用。