Giant capsids from lattice self-assembly of cyclodextrin complexes

Publication date

2017-06-20

Authors

Yang, Shenyu
Yan, Yun
Huang, Jianbin
Petukhov, A.V.ORCID 0000-0001-9840-6014ISNI 0000000389991404
Kroon - Batenburg, LoesISNI 000000038924349X
Drechsler, Markus
Zhou, Chengcheng
Tu, Mei
Granick, Steve
Jiang, Lingxiang

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Abstract

Proteins can readily assemble into rigid, crystalline and functional structures such as viral capsids and bacterial compartments. Despite ongoing advances, it is still a fundamental challenge to design and synthesize protein-mimetic molecules to form crystalline structures. Here we report the lattice self-assembly of cyclodextrin complexes into a variety of capsid-like structures such as lamellae, helical tubes and hollow rhombic dodecahedra. The dodecahedral morphology has not hitherto been observed in self-assembly systems. The tubes can spontaneously encapsulate colloidal particles and liposomes. The dodecahedra and tubes are respectively comparable to and much larger than the largest known virus. In particular, the resemblance to protein assemblies is not limited to morphology but extends to structural rigidity and crystallinity - A well-defined, 2D rhombic lattice of molecular arrangement is strikingly universal for all the observed structures. We propose a simple design rule for the current lattice self-assembly, potentially opening doors for new protein-mimetic materials.

Keywords

General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy

Citation

Yang, S, Yan, Y, Huang, J, Petukhov, A V, Kroon - Batenburg, L M J, Drechsler, M, Zhou, C, Tu, M, Granick, S & Jiang, L 2017, 'Giant capsids from lattice self-assembly of cyclodextrin complexes', Nature Communications, vol. 8, 15856. https://doi.org/10.1038/ncomms15856