Transferrin receptor targeting by de novo sheet extension.

通过从头延伸片层结构靶向转铁蛋白受体

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作者:Sahtoe Danny D, Coscia Adrian, Mustafaoglu Nur, Miller Lauren M, Olal Daniel, Vulovic Ivan, Yu Ta-Yi, Goreshnik Inna, Lin Yu-Ru, Clark Lars, Busch Florian, Stewart Lance, Wysocki Vicki H, Ingber Donald E, Abraham Jonathan, Baker David
The de novo design of polar protein-protein interactions is challenging because of the thermodynamic cost of stripping water away from the polar groups. Here, we describe a general approach for designing proteins which complement exposed polar backbone groups at the edge of beta sheets with geometrically matched beta strands. We used this approach to computationally design small proteins that bind to an exposed beta sheet on the human transferrin receptor (hTfR), which shuttles interacting proteins across the blood-brain barrier (BBB), opening up avenues for drug delivery into the brain. We describe a design which binds hTfR with a 20 nM K(d), is hyperstable, and crosses an in vitro microfluidic organ-on-a-chip model of the human BBB. Our design approach provides a general strategy for creating binders to protein targets with exposed surface beta edge strands.

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