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Self-Assembly of Coiled Coils in Synthetic Biology: Inspiration and Progress

机译:合成生物学中盘绕线圈的自组装:启示与进展

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摘要

Biological self-assembly is very complex and results in highly functional materials. In effect, it takes a bottom-up approach using bio-molecular building blocks of precisely defined shape, size, hydro-phobicity, and spatial distribution of functionality. Inspired by, and drawing lessons from self-assembly processes in nature, scientists are learning how to control the balance of many small forces to increase the complexity and functionality of self-assembled nanomaterials. The coiled-coil motif, a multipurpose building block commonly found in nature, has great potential in synthetic biology. In this review we examine the roles that the coiled-coil peptide motif plays in self-assembly in nature, and then summarize the advances that this has inspired in the creation of functional units, assemblies, and systems.
机译:生物自组装非常复杂,并导致功能强大的材料。实际上,它采用自底向上方法,使用具有精确定义的形状,大小,疏水性和功能性空间分布的生物分子构建基块。受自然界自组装过程的启发,并从中汲取教训,科学家们正在学习如何控制许多小力的平衡,以增加自组装纳米材料的复杂性和功能性。盘绕线圈图案是自然界中常见的多用途构建基块,在合成生物学中具有巨大潜力。在这篇综述中,我们研究了卷曲螺旋肽基序在自然自组装中所扮演的角色,然后总结了这在功能单元,组件和系统的创建中所受到的启发。

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