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Design and construction of self-assembling supramolecular protein complexes using artificial and fusion proteins as nanoscale building blocks

机译:使用人工和融合蛋白作为纳米级构建块的自组装超分子蛋白复合物的设计与构建

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摘要

The central goal of nanobiotechnology is to design and construct novel biomaterials of nanometer sizes. In this short review, we describe recent progress of several approaches for designing and creating artificial self-assembling protein complexes and primarily focus on the following biotechnological strategies for using artificial and fusion proteins as nanoscale building blocks: fusion proteins designed for symmetrical self-assembly; three-dimensional domain-swapped oligomers; self-assembling designed coiled-coil peptide modules; metal-directed self-assembling engineered proteins; computationally designed self assembling de novo proteins; and self-assembling protein nanobuilding blocks (PN-Blocks) using an intermolecularly folded dimeric de novo protein. These state-of-the-art nanobiotechnologies for designing supramolecular protein complexes will facilitate the development of novel functional nanobiomaterials.
机译:纳米能力的核心目标是设计和构建纳米尺寸的新型生物材料。 在这次缺课中,我们描述了几种用于设计和创造人工自组装蛋白复合物的方法的最新进展,主要关注以下使用人工和融合蛋白作为纳米级构建块的以下生物技术策略:设计用于对称自组装的融合蛋白; 三维畴 - 交换的低聚物; 自组装设计的卷曲线圈肽模块; 金属定向自组装工程蛋白; 计算设计的自我组装De Novo蛋白; 使用分子间折叠的二聚体DE Novo蛋白和自组装蛋白质纳米醛嵌段(PN-嵌段)。 这些用于设计超分子蛋白质复合物的最先进的纳米能力将促进新型官能纳米胺材料的发展。

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