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Characterization of Protein based Spring-like Elastic Joints for Biorobotic Applications

机译:基于蛋白质的生物毒性应用的蛋白质弹簧弹性接头的表征

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This paper presents a molecular mechanics study using a molecular dynamics software (NAMD) for characterization of molecular elastic joints for bio nanorobotic prototyping. Simple protein-like elastic joints elements for structural links have been carefully studied and simulated to understand the functional limits of each one of them: fibronectin, titin, deca-alanine, fibrillin, Rop and double-helical DNA molecules. We simulated the restoring forces involved under various external mechanical stress to predict the type of force spectra, reversibility, degrees of freedom and irreversible work that may be expected from single-molecule protein manipulation experiments. Their use as elementary molecular components for bio-nanorobotic structures are also simulated and the results discussed.
机译:本文介绍了使用分子动力学软件(NAMD)的分子力学研究,用于表征生物纳米菌型原型的分子弹性接头。已经仔细研究和模拟了用于结构链路的简单蛋白质的弹性接头元件,以了解它们中每一个的功能限制:纤连蛋白,三肽,Deca-丙氨酸,Fibrillin,ROP和双螺旋DNA分子。我们模拟了在各种外部机械应力下所涉及的恢复力,以预测可以从单分子蛋白化操作实验中预期的力谱,可逆性,自由度和不可逆的工作的类型。还模拟了它们作为生物纳米菌斑结构的基本分子组分的用途,并讨论了结果。

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