4.8 Article

Biomineralization of a Cadmium Chloride Nanocrystal by a Designed Symmetrical Protein

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 54, Issue 34, Pages 9857-9860

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201503575

Keywords

biomineralization; 2D crystals; metalloproteins; nanomaterials; oligomers

Funding

  1. RIKEN FPR fellowship

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We have engineered a metal-binding site into the novel artificial beta-propeller protein Pizza. This new Pizza variant carries two nearly identical domains per polypeptide chain, and forms a trimer with three-fold symmetry. The designed single metal ion binding site lies on the symmetry axis, bonding the trimer together. Two copies of the trimer associate in the presence of cadmium chloride in solution, and very high-resolution X-ray crystallographic analysis reveals a nanocrystal of cadmium chloride, sandwiched between two trimers of the protein. This nanocrystal, containing seven cadmium ions lying in a plane and twelve interspersed chloride ions, is the smallest reported to date. Our results indicate the feasibility of using rationally designed symmetrical proteins to biomineralize nanocrystals with useful properties.

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