Structure of a designed tetrahedral protein assembly variant engineered to have improved soluble expression

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Abstract

We recently reported the development of a computational method for the design of coassembling multicomponent protein nanomaterials. While four such materials were validated at high-resolution by X-ray crystallography, low yield of soluble protein prevented X-ray structure determination of a fifth designed material, T33-09. Here we report the design and crystal structure of T33-31, a variant of T33-09 with improved soluble yield resulting from redesign efforts focused on mutating solvent-exposed side chains to charged amino acids. The structure is found to match the computational design model with atomic-level accuracy, providing further validation of the design approach and demonstrating a simple and potentially general means of improving the yield of designed protein nanomaterials.

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Bale, J. B., Park, R. U., Liu, Y., Gonen, S., Gonen, T., Cascio, D., … Baker, D. (2015). Structure of a designed tetrahedral protein assembly variant engineered to have improved soluble expression. Protein Science, 24(10), 1695–1701. https://doi.org/10.1002/pro.2748

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