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Self-Assembly Toolbox of Tailored Supramolecular Architectures Based on an Amphiphilic Protein Library

机译:基于两亲蛋白质文库的定制超分子架构的自组装工具箱

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The molecular structuring of complex architectures and the enclosure of space are essential requirements for technical and living systems. Selfassembly of supramolecular structures with desired shape, size, and stability remains challenging since it requires precise regulation of physicochemical and conformational properties of the components. Here a general platform for controlled self-assembly of tailored amphiphilic elastin-like proteins into desired supramolecular protein assemblies ranging from spherical coacervates over molecularly defined twisted fibers to stable unilamellar vesicles is introduced. The described assembly protocols efficiently yield protein membrane-based compartments (PMBC) with adjustable size, stability, and net surface charge. PMBCs demonstrate membrane fusion and phase separation behavior and are able to encapsulate structurally and chemically diverse cargo molecules ranging from small molecules to naturally folded proteins. The ability to engineer tailored supramolecular architectures with defined fusion behavior, tunable properties, and encapsulated cargo paves the road for novel drug delivery systems, the design of artificial cells, and confined catalytic nanofactories.
机译:复杂架构和空间外壳的分子结构是技术和生活系统的必要要求。自体叠片的超分子结构具有所需的形状,尺寸和稳定性仍然具有挑战性,因为它需要精确调节组分的物理化学和构象性质。这里引入了一种用于受控的两亲性弹性蛋白样蛋白的受控自组装的一般平台,进入所需的超分子蛋白质组件,从而从球面凝聚到分子定义的扭纤维稳定到稳定的单玻璃囊泡。所描述的组装方案有效地产生蛋白质膜的隔室(PMBC),可调节尺寸,稳定性和净表面电荷。 PMBCS展示膜融合和相分离行为,并且能够在结构上和化学上不同的货物分子包封,该分子范围从小分子到天然折叠的蛋白质。能够使用定义的融合行为,可调性和封装的货物来设计具有定义的融合行为,可调性和封装的货物的能力,为新颖的药物输送系统,人造细胞设计和狭窄的催化纳压物。

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