The impact of the diffusion parameter on the passage time of the folding process

Marcelo Tozo Araujo, J. Chahine, E. Drigo Filho, Regina Maria Ricotta
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Abstract

Recently, a mathematical method to solve the Fokker Plank equation (FPE) enabled the analysis of the protein folding kinetics, through the construction of the temporal evolution of the probability density. A symmetric tri-stable potential function was used to describe the unfolded and folded states of the protein as well as an intermediate state of the protein. In this paper, the main points of the methodology are reviewed, based on the algebraic Supersymmetric Quantum Mechanics (SQM) formalism, and new results on the kinetics of the evolution of the system characterized in terms of the diffusion parameter are presented.
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扩散参数对折叠过程通过时间的影响
最近,一种求解福克-普朗克方程(FPE)的数学方法通过构建概率密度的时间演化,对蛋白质折叠动力学进行了分析。对称三稳定势函数被用来描述蛋白质的展开和折叠状态,以及蛋白质的中间状态。本文以代数超对称量子力学(SQM)形式为基础,回顾了该方法的要点,并介绍了以扩散参数为特征的系统演化动力学的新结果。
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