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The role of chromatin conformations in diffusional transport of chromatin-binding proteins: Cartesian lattice simulations

机译:染色质构象在染色质结合蛋白的扩散运输中的作用:笛卡尔网格模拟

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In this paper, a lattice model for the diffusional transport of chromatin-binding particles in the interphase cell nucleus is proposed. Sliding effects are studied in dense networks of chromatin fibers created by three different methods: Randomly distributed, noninterconnected obstacles, a random walk chain model with an attractive step potential, and a self-avoiding random walk chain model with a hard repulsive core and attractive surroundings. By comparing a discrete and continuous version of the random walk chain model, we demonstrate that lattice discretization does not alter the diffusion of chromatin-binding particles. The influence of conformational properties of the fiber network on the particle sliding is investigated in detail while varying occupation volume, sliding probability, chain length, and persistence length. It is observed that adjacency of the monomers, the excluded volume effect incorporated in the self-avoiding random walk model, and the persistence length affect the chromatin-binding particle diffusion. It is demonstrated that sliding particles sense local chain structures. When plotting the diffusion coefficient as a function of the accessible volume for diffusing particles, the data fall onto master curves depending on the persistence length. However, once intersegment transfer is involved, chromatin-binding proteins no longer perceive local chain structures. (C) 2008 American Institute of Physics.
机译:本文提出了一种格状模型,用于染色质结合颗粒在相间细胞核中的扩散传输。在通过三种不同方法创建的染色质纤维密集网络中研究了滑动效果:随机分布的,非互连的障碍物,具有有吸引力的阶跃电位的随机行走链模型以及具有硬斥力芯和有吸引力的环境的自避免随机行走链模型。通过比较离散和连续版本的随机步行链模型,我们证明晶格离散化不会改变染色质结合颗粒的扩散。详细研究了纤维网络的构象性质对粒子滑动的影响,同时改变了占有量,滑动概率,链长和持久性长度。观察到单体的邻接,在自动规避随机游走模型中引入的排除体积效应以及持续时间会影响染色质结合颗粒的扩散。结果表明,滑动颗粒感知局部链结构。将扩散系数绘制为扩散粒子的可访问体积的函数时,数据会根据持久性长度落入主曲线。但是,一旦涉及段间转移,染色质结合蛋白将不再能感知局部链结构。 (C)2008美国物理研究所。

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