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Modeling the emergence of multi-protein dynamic structures by principles of self-organization through the use of 3DSpi, a multi-agent-based software.

机译:通过使用基于多代理的软件3DSpi的自组织原理,对多蛋白动态结构的出现进行建模。

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摘要

BACKGROUND: There is an increasing need for computer-generated models that can be used for explaining the emergence and predicting the behavior of multi-protein dynamic structures in cells. Multi-agent systems (MAS) have been proposed as good candidates to achieve this goal. RESULTS: We have created 3DSpi, a multi-agent based software that we used to explore the generation of multi-protein dynamic structures. Being based on a very restricted set of parameters, it is perfectly suited for exploring the minimal set of rules needed to generate large multi-protein structures. It can therefore be used to test the hypothesis that such structures are formed and maintained by principles of self-organization. We observed that multi-protein structures emerge and that the system behavior is very robust, in terms of the number and size of the structures generated. Furthermore, the generated structures very closely mimic spatial organization of real life multi-protein structures. CONCLUSION: The behavior of 3DSpi confirms the considerable potential of MAS for modeling subcellular structures. It demonstrates that robust multi-protein structures can emerge using a restricted set of parameters and allows the exploration of the dynamics of such structures. A number of easy-to-implement modifications should make 3DSpi the virtual simulator of choice for scientists wishing to explore how topology interacts with time, to regulate the function of interacting proteins in living cells.
机译:背景:对计算机生成的模型的需求日益增长,该模型可用于解释细胞中多蛋白动态结构的出现和预测行为。已提出多代理系统(MAS)作为实现此目标的良好候选者。结果:我们创建了3DSpi,这是一个基于多代理的软件,用于探索多蛋白动态结构的生成。基于一组非常有限的参数,它非常适合探索生成大型多蛋白结构所需的最小规则集。因此可以用来检验这样的假设,即这种结构是根据自组织原理形成和维持的。我们观察到,就生成的结构的数量和大小而言,出现了多种蛋白质结构,并且系统行为非常强大。此外,生成的结构非常紧密地模拟了现实生活中多蛋白结构的空间组织。结论:3DSpi的行为证实了MAS在建模亚细胞结构方面的巨大潜力。它表明可以使用一组受限的参数来显示鲁棒的多蛋白结构,并可以探索此类结构的动力学。许多易于实现的修改应使3DSpi成为希望探索拓扑如何与时间相互作用,调节活细胞中相互作用蛋白功能的科学家的首选虚拟模拟器。

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