Authors
Zhong Guo, Oleh Smutok, Cagla Ergun Ayva, Patricia Walden, Jake Parker, Jason Whitfield, Claudia E Vickers, Jacobus PJ Ungerer, Evgeny Katz, Kirill Alexandrov
Publication date
2023/11
Journal
Nature Nanotechnology
Volume
18
Issue
11
Pages
1327-1334
Publisher
Nature Publishing Group UK
Description
The construction and assembly of artificial allosteric protein switches into information and energy processing networks connected to both biological and non-biological systems is a central goal of synthetic biology and bionanotechnology. However, designing protein switches with the desired input, output and performance parameters is challenging. Here we use a range of reporter proteins to demonstrate that their chimeras with duplicated receptor domains produce YES gate protein switches with large (up to 9,000-fold) dynamic ranges and fast (minutes) response rates. In such switches, the epistatic interactions between largely independent synthetic allosteric sites result in an OFF state with minimal background noise. We used YES gate protein switches based on β-lactamase to develop quantitative biosensors of therapeutic drugs and protein biomarkers. Furthermore, we demonstrated the reconfiguration of YES …
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