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Three-Dimensional Stochastic Off-Lattice Model of Binding Chemistry in Crowded Environments

机译:拥挤环境中结合化学的三维随机离格模型

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摘要

Molecular crowding is one of the characteristic features of the intracellular environment, defined by a dense mixture of varying kinds of proteins and other molecules. Interaction with these molecules significantly alters the rates and equilibria of chemical reactions in the crowded environment. Numerous fundamental activities of a living cell are strongly influenced by the crowding effect, such as protein folding, protein assembly and disassembly, enzyme activity, and signal transduction. Quantitatively predicting how crowding will affect any particular process is, however, a very challenging problem because many physical and chemical parameters act synergistically in ways that defy easy analysis. To build a more realistic model for this problem, we extend a prior stochastic off-lattice model from two-dimensional (2D) to three-dimensional (3D) space and examine how the 3D results compare to those found in 2D. We show that both models exhibit qualitatively similar crowding effects and similar parameter dependence, particularly with respect to a set of parameters previously shown to act linearly on total reaction equilibrium. There are quantitative differences between 2D and 3D models, although with a generally gradual nonlinear interpolation as a system is extended from 2D to 3D. However, the additional freedom of movement allowed to particles as thickness of the simulation box increases can produce significant quantitative change as a system moves from 2D to 3D. Simulation results over broader parameter ranges further show that the impact of molecular crowding is highly dependent on the specific reaction system examined.
机译:分子拥挤是细胞内环境的特征之一,由各种蛋白质和其他分子的密集混合物定义。与这些分子的相互作用显着改变了拥挤环境中化学反应的速率和平衡。活细胞的许多基本活动受拥挤效应的强烈影响,例如蛋白质折叠,蛋白质组装和分解,酶活性和信号转导。但是,定量预测拥挤将如何影响任何特定过程是一个非常具有挑战性的问题,因为许多物理和化学参数以无法轻易进行分析的方式协同作用。要针对此问题构建更现实的模型,我们将先前的随机非晶格模型从二维(2D)空间扩展到了三维(3D)空间,并检查了3D结果与2D结果之间的比较。我们显示这两个模型在质量上都表现出相似的拥挤效应和相似的参数依赖性,特别是相对于先前显示为线性作用于总反应平衡的一组参数而言。 2D和3D模型之间存在定量差异,尽管随着系统从2D扩展到3D,通常采用渐进式非线性插值。但是,随着系统从2D到3D的移动,随着模拟盒厚度的增加,粒子所具有的额外运动自由度可能会产生明显的定量变化。在更宽的参数范围内的仿真结果进一步表明,分子拥挤的影响高度取决于所检查的特定反应系统。

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