首页> 外文期刊>Computational and Structural Biotechnology Journal >{MEMBRANE} {PACKING} PROBLEMS: A {SHORT} {REVIEW} {ON} {COMPUTATIONAL} {MEMBRANE} {MODELING} {METHODS} {AND} {TOOLS}
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{MEMBRANE} {PACKING} PROBLEMS: A {SHORT} {REVIEW} {ON} {COMPUTATIONAL} {MEMBRANE} {MODELING} {METHODS} {AND} {TOOLS}

机译:{MEMBRANE} {PACKING}问题:{SHORT} {REVIEW} {ON} {COMPUTATIONAL} {MEMBRANE} {MODELING} {METHODS} {AND} {TOOLS}

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The use of model membranes is currently part of the daily workflow for many biochemical and biophysical disciplines. These membranes are used to analyze the behavior of small substances, to simulate transport processes, to study the structure of macromolecules or for illustrative purposes. But, how can these membrane structures be generated? This mini review discusses a number of ways to obtain these structures. First, the problem will be formulated as the Membrane Packing Problem. It will be shown that the theoretical problem of placing proteins and lipids onto a membrane area differ significantly. Thus, two sub-problems will be defined and discussed. Then, different – partly historical – membrane modeling methods will be introduced. And finally, membrane modeling tools will be evaluated which are able to semi-automatically generate these model membranes and thus, drastically accelerate and simplify the membrane generation process. The mini review concludes with advice about which tool is appropriate for which application case.
机译:目前,许多生物化学和生物物理学科都使用模型膜作为日常工作流程的一部分。这些膜用于分析小物质的行为,模拟运输过程,研究大分子的结构或用于说明目的。但是,如何产生这些膜结构?这篇迷你评论讨论了获得这些结构的多种方法。首先,将问题表述为膜包装问题。将显示出将蛋白质和脂质置于膜区域上的理论问题明显不同。因此,将定义和讨论两个子问题。然后,将介绍不同的(部分为历史性的)膜建模方法。最后,将对膜建模工具进行评估,该工具能够半自动生成这些模型膜,从而极大地加速和简化膜生成过程。小型审查最后给出关于哪种工具适合于哪种应用程序案例的建议。

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