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Coiled coil protein origami: from modular design principles towards biotechnological applications

机译:盘绕卷蛋白折纸:从模块化设计原则朝向生物技术应用

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摘要

The design of new protein folds represents a grand challenge for synthetic, chemical and structural biology. Due to the good understanding of the principles governing its pairing specificity, coiled coil (CC) peptide secondary structure elements can be exploited for the construction of modular protein assemblies acting as a proxy for the straightforward complementarity of DNA modules. The prerequisite for the successful translation of the modular assembly strategy pioneered by DNA nanotechnology to protein design is the availability of orthogonal building modules: a collection of peptides that assemble into CCs only with their predetermined partners. Modular CC-based protein structures can self-assemble from multiple polypeptide chains whose pairing is determined by the interaction pattern of the constituent building blocks. Orthogonal CC sets can however also be used for the design of more complex coiled coil protein origami (CCPO) structures. CCPOs are based on multiple CC modules concatenated into a single polypeptide chain that folds into a polyhedral protein cage as the peptide segments assemble into CC dimers. The CCPO strategy has hitherto led to successful de novo design of protein cages in the shape of a tetrahedron, square pyramid and triangular prism. Recent advances in the design of CC modules and design principles have enabled the construction of CCPOs that self-assemble in vivo without any apparent toxicity to human cells or animals, opening the path towards therapeutic applications. The CCPO platform therefore has potential for diverse applications in biomedicine and biotechnology, from drug delivery to molecular cages.
机译:新蛋白质褶皱的设计代表了合成,化学和结构生物学的大挑战。由于对控制其配对特异性的原理的良好理解,卷曲线圈(CC)肽二次结构元件可以被利用用于构建作用作为DNA模块的直接互补性的代理的模块化蛋白质组件。通过DNA纳米技术开创的模块化装配策略成功翻译的先决条件是正交建筑模块的可用性:仅与其预定的合作伙伴组装成CCS的肽集合。模块化CC基蛋白质结构可以从多肽链中自组装,其配对由组成构件块的相互作用图案确定。然而,正交的CC组也可以用于设计更复杂的盘绕卷蛋白折纸(CCPO)结构。 CCPO基于多个CC模块连接到单个多肽链中,作为肽段组装成CC二聚体的肽段折叠成多面体蛋白笼中。迄今为止,CCPO策略导致了四面体,方形金字塔和三角形棱镜形状的蛋白质笼的成功设计。 CC模块和设计原理设计的最新进展使得CCPO的构建能够在没有对人细胞或动物的表观毒性的情况下自组装,对治疗应用的路径打开。因此,CCPO平台具有生物医学和生物技术的不同应用,从药物递送到分子笼。

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  • 来源
    《Chemical Society Reviews》 |2018年第10期|共13页
  • 作者单位

    Natl Inst Chem Dept Synthet Biol &

    Immunol Ljubljana Slovenia;

    Natl Inst Chem Dept Synthet Biol &

    Immunol Ljubljana Slovenia;

    Natl Inst Chem Dept Synthet Biol &

    Immunol Ljubljana Slovenia;

    Natl Inst Chem Dept Synthet Biol &

    Immunol Ljubljana Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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