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DOE OSTI · 1855289

Interleukin-2 superkines by computational design

Abstract

Significance While computational engineering of therapeutic proteins is a desirable goal, in practice the optimization of protein–protein interactions requires substantial experimental intervention. We present here a computational approach that focuses on stabilizing core protein structures rather than engineering the protein–protein interface. Using this approach, we designed thermostabilized interleukin-2 (IL-2) variants that bind tightly to their receptor without experimental optimization, mimicking the properties of the yeast-display engineered IL-2 variant “super-2.” Our results suggest that structure-guided stabilization may be a general method for in silico affinity maturation of protein–protein interactions.

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BibTeXRIS

Ren, Junming, Chu, Alexander E., Jude, Kevin M., Picton, Lora K., Kare, Aris J., Su, Leon, Montano Romero, Alejandra, Huang, Po-Ssu, Garcia, K. Christopher. 2022-03-16. Interleukin-2 superkines by computational design. https://doi.org/10.1073/pnas.2117401119

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