Department of Synthetic Biology and Immunology, National Institute of Chemistry, Ljubljana, Slovenia.
EN-FIST Centre of Excellence, Ljubljana, Slovenia.
Nat Commun. 2021 Feb 11;12(1):939. doi: 10.1038/s41467-021-21184-6.
Coiled-coil protein origami (CCPO) is a modular strategy for the de novo design of polypeptide nanostructures. CCPO folds are defined by the sequential order of concatenated orthogonal coiled-coil (CC) dimer-forming peptides, where a single-chain protein is programmed to fold into a polyhedral cage. Self-assembly of CC-based nanostructures from several chains, similarly as in DNA nanotechnology, could facilitate the design of more complex assemblies and the introduction of functionalities. Here, we show the design of a de novo triangular bipyramid fold comprising 18 CC-forming segments and define the strategy for the two-chain self-assembly of the bipyramidal cage from asymmetric and pseudo-symmetric pre-organised structural modules. In addition, by introducing a protease cleavage site and masking the interfacial CC-forming segments in the two-chain bipyramidal cage, we devise a proteolysis-mediated conformational switch. This strategy could be extended to other modular protein folds, facilitating the construction of dynamic multi-chain CC-based complexes.
螺旋蛋白折叠(CCPO)是从头设计多肽纳米结构的一种模块化策略。CCPO 折叠由串联的正交螺旋卷曲(CC)二聚体形成肽的顺序定义,其中单链蛋白被编程为折叠成多面体笼。基于 CC 的纳米结构从几条链的自组装,类似于 DNA 纳米技术,可以促进更复杂的组装和功能的引入。在这里,我们设计了一个由 18 个 CC 形成片段组成的新的三角形双锥折叠,并定义了从不对称和拟对称预组织结构模块的双锥笼的双链自组装策略。此外,通过引入蛋白酶切割位点并在双链双锥笼中掩蔽界面 CC 形成片段,我们设计了一种蛋白酶介导的构象开关。该策略可以扩展到其他模块化蛋白折叠,促进动态多链 CC 基复合物的构建。