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An integrated parametric model for MT self-assembly formation analysis

机译:MT自组装形成分析的集成参数模型

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Self-assembly is a ubiquitous, naturally occurring, robust process in many living organisms. Microtubule (MT), a self-organization system assemble itself into functional units by attaching to cellular structures. Modeling microtubule self-organization is of interest as microtubule forms a network of protein filaments that is critical to many processes in eukaryotic cells. In this paper, we propose an optimization framework that considers MT self-assembly starting from alpha (alpha) and beta (beta) tubulins as basic building blocks in the self-organization of MT. Using this framework we present separate analysis of MT self-assembly strength by considering two aspects of MT self-assembly. First, the affinity factor distribution between neighboring tubulins of an MT is considered for the analysis. Second, this paper also present an analysis of structural stability considering geometric parameter distribution of tubulins within an MT. We present separate algorithms for the analysis in detail. The proposed models show convergence and robustness under random initialization and thus justify the effectiveness of the proposed convergence criteria for stability analysis of MT self-organization. The proposed algorithms show the ability to emulate MT self-assembly from random initial configurations.
机译:在许多生物体中,自我组装是一种无处不在的,天然存在的鲁棒过程。微管(MT),自组织系统通过连接到蜂窝结构来组装成功能单元。由于微管形成蛋白质长丝网络,模拟微管自组织是感兴趣的,这对于真核细胞中许多过程至关重要。在本文中,我们提出了一种优化框架,将MT自组装从α(α)和β(β)管蛋白开始作为MT的自组织中的基本构建块开始。使用本框架,我们通过考虑MT自组装的两个方面,通过考虑MT自组装强度的单独分析。首先,考虑用于分析的MT的相邻管蛋白之间的亲和因子分布。其次,本文还介绍了考虑MT内管蛋白的几何参数分布的结构稳定性分析。我们详细介绍了分析的单独算法。所提出的模型显示随机初始化的收敛性和鲁棒性,从而证明了拟议的收敛标准的稳定性分析稳定性分析的有效性。所提出的算法显示了从随机初始配置中模拟MT自组装的能力。

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