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De novo design of bioactive protein switches

nature. 2019; 
Langan RA, , Boyken SE, Ng AH, , Samson JA, Dods G, Westbrook AM, Nguyen TH, Lajoie MJ, Chen Z, , Berger S, Mulligan VK, Dueber JE, Novak WRP, El-Samad H, Baker D, .
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Abstract

Allosteric regulation of protein function is widespread in biology, but is challenging for de novo protein design as it requires the explicit design of multiple states with comparable free energies. Here we explore the possibility of designing switchable protein systems de novo, through the modulation of competing inter- and intramolecular interactions. We design a static, five-helix 'cage' with a single interface that can interact either intramolecularly with a terminal 'latch' helix or intermolecularly with a peptide 'key'. Encoded on the latch are functional motifs for binding, degradation or nuclear export that function only when the key displaces the latch from the cage. We describe orthogonal cage-key sys... More

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