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DOI: 10.1126/science.1219364
¤ OpenAccess: Green
This work has “Green” OA status. This means it may cost money to access on the publisher landing page, but there is a free copy in an OA repository.

Computational Design of Self-Assembling Protein Nanomaterials with Atomic Level Accuracy

Neil P. King,William Sheffler,M.R. Sawaya,Breanna S. Vollmar,John P. Sumida,Ingemar André,Tamir Gonen,Todd O. Yeates,David Baker

Tetrahedron
Protein subunit
Nanomaterials
2012
We describe a general computational method for designing proteins that self-assemble to a desired symmetric architecture. Protein building blocks are docked together symmetrically to identify complementary packing arrangements, and low-energy protein-protein interfaces are then designed between the building blocks in order to drive self-assembly. We used trimeric protein building blocks to design a 24-subunit, 13-nm diameter complex with octahedral symmetry and a 12-subunit, 11-nm diameter complex with tetrahedral symmetry. The designed proteins assembled to the desired oligomeric states in solution, and the crystal structures of the complexes revealed that the resulting materials closely match the design models. The method can be used to design a wide variety of self-assembling protein nanomaterials.
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    Computational Design of Self-Assembling Protein Nanomaterials with Atomic Level Accuracy” is a paper by Neil P. King William Sheffler M.R. Sawaya Breanna S. Vollmar John P. Sumida Ingemar André Tamir Gonen Todd O. Yeates David Baker published in 2012. It has an Open Access status of “green”. You can read and download a PDF Full Text of this paper here.