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首页> 外文期刊>Angewandte Chemie >Fortified Coiled Coils: Enhancing Mechanical Stability with Lactam or Metal Staples
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Fortified Coiled Coils: Enhancing Mechanical Stability with Lactam or Metal Staples

机译:强化卷绕线圈:用内酰胺或金属钉提高机械稳定性

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摘要

Coiled coils (CCs) are powerful supramolecular building blocks for biomimetic materials, increasingly used for their mechanical properties. Here, we introduce helix-inducing macrocyclic constraints, so-called staples, to tune thermodynamic and mechanical stability of CCs. We show that thermodynamic stabilization of CCs against helix uncoiling primarily depends on the number of staples, whereas staple positioning controls CC mechanical stability. Inserting a covalent lactam staple at one key force application point significantly increases the barrier to force-induced CC dissociation and reduces structural deformity. A reversible His-Ni2+-His metal staple also increases CC stability, but ruptures upon mechanical loading to allow helix uncoiling. Staple type, position and number are key design parameters in using helical macrocyclic templates for fine-tuning CC properties in emerging biomaterials.
机译:螺旋线圈(CCs)是仿生材料的强大超分子构件,因其机械性能而得到越来越多的应用。在这里,我们引入螺旋诱导的大循环约束,即所谓的钉,来调整CCs的热力学和机械稳定性。我们发现,CC对螺旋线开卷的热力学稳定性主要取决于订书钉的数量,而订书钉的定位控制着CC的机械稳定性。在一个关键施力点插入共价内酰胺短纤维可显著增加力诱导CC分离的屏障,并减少结构畸形。可逆His-Ni2+-His金属钉也可以增加CC的稳定性,但在机械加载时会断裂,从而允许螺旋线展开。钉的类型、位置和数量是使用螺旋大环模板微调新兴生物材料CC性能的关键设计参数。

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