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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Self-assembled nanocages based on the coiled coil bundle motif
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APS -APS March Meeting 2017 - Event - Self-assembled nanocages based on the coiled coil bundle motif

机译:APS -APS 2017年3月会议-活动-基于卷曲线圈束图案的自组装纳米笼

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摘要

Computational design of coiled coil peptide bundles that undergo solution phase self-assembly presents a diverse toolbox for engineering new materials with tunable and pre-determined nanostructures that can have various end applications such as in drug delivery, biomineralization and electronics. Self-assembled cages are especially advantageous as the cage geometry provides three distinct functional sites: the interior, the exterior and the solvent-cage interface. In this poster, syntheses and characterization of a peptide cage based on computationally designed homotetrameric coiled coil bundles as building blocks is discussed. Techniques such as Transmission Electron Microscopy (TEM), Small-Angle Neutron Scattering (SANS) and Analytical Ultracentrifugation (AUC) are employed to characterize the size, shape and molecular weight of the self-assembled peptide cages under different pH and temperature conditions. Various self-assembly pathways such as dialysis and thermal quenching are shown to have a significant impact on the final structure of these peptides in solution. Comparison of results with the target cage design can be used to iteratively improve the peptide design and provide greater understanding of its interactions and folding.
机译:进行溶液相自组装的卷曲螺旋肽束的计算设计提供了一个多样化的工具箱,用于工程化具有可调和预定纳米结构的新材料,这些新材料可以在药物输送,生物矿化和电子学等领域有多种最终应用。自组装式阀笼特别有利,因为阀笼的几何形状提供了三个不同的功能部位:内部,外部和溶剂-笼界面。在此海报中,讨论了基于计算设计的同四聚体卷曲螺旋束作为构建基块的肽笼的合成和表征。采用诸如透射电子显微镜(TEM),小角中子散射(SANS)和分析超速离心(AUC)之类的技术来表征在不同pH和温度条件下自组装肽笼的大小,形状和分子量。各种自组装途径,例如透析和热淬灭,对溶液中这些肽的最终结构有重要影响。与靶笼设计的结果比较可用于迭代改进肽设计并提供对其相互作用和折叠的更多理解。

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