Crystal Structure of de Novo Designed Coiled-Coil Protein Origami Triangle

螺旋线圈 化学 蛋白质设计 拓扑(电路) 模块化设计 折叠(高阶函数) 蛋白质工程 结晶学 DNA折纸 蛋白质结构 组合数学 计算机科学 DNA 操作系统 生物化学 程序设计语言 数学
作者
Tadej Satler,San Hadži,Roman Jerala
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:145 (31): 16995-17000 被引量:7
标识
DOI:10.1021/jacs.3c05531
摘要

Coiled-coil protein origami (CCPO) uses modular coiled-coil building blocks and topological principles to design polyhedral structures distinct from those of natural globular proteins. While the CCPO strategy has proven successful in designing diverse protein topologies, no high-resolution structural information has been available about these novel protein folds. Here we report the crystal structure of a single-chain CCPO in the shape of a triangle. While neither cyclization nor the addition of nanobodies enabled crystallization, it was ultimately facilitated by the inclusion of a GCN2 homodimer. Triangle edges are formed by the orthogonal parallel coiled-coil dimers P1:P2, P3:P4, and GCN2 connected by short linkers. A triangle has a large central cavity and is additionally stabilized by side-chain interactions between neighboring segments at each vertex. The crystal lattice is densely packed and stabilized by a large number of contacts between triangles. Interestingly, the polypeptide chain folds into a trefoil-type protein knot topology, and AlphaFold2 fails to predict the correct fold. The structure validates the modular CC-based protein design strategy, providing molecular insight underlying CCPO stabilization and new opportunities for the design.

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