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Chimeric single α-helical domains as rigid fusion protein connections for protein nanotechnology and structural biology

Collu, Gabriella and Bierig, Tobias and Krebs, Anna-Sophia and Engilberge, Sylvain and Varma, Niveditha and Guixà-González, Ramon and Sharpe, Timothy and Deupi, Xavier and Olieric, Vincent and Poghosyan, Emiliya and Benoit, Roger M.. (2022) Chimeric single α-helical domains as rigid fusion protein connections for protein nanotechnology and structural biology. Structure, 30 (1). pp. 95-106.e7.

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Official URL: https://edoc.unibas.ch/93680/

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Abstract

Chimeric fusion proteins are essential tools for protein nanotechnology. Non-optimized protein-protein connections are usually flexible and therefore unsuitable as structural building blocks. Here we show that the ER/K motif, a single α-helical domain (SAH), can be seamlessly fused to terminal helices of proteins, forming an extended, partially free-standing rigid helix. This enables the connection of two domains at a defined distance and orientation. We designed three constructs termed YFPnano, T4Lnano, and MoStoNano. Analysis of experimentally determined structures and molecular dynamics simulations reveals a certain degree of plasticity in the connections that allows the adaptation to crystal contact opportunities. Our data show that SAHs can be stably integrated into designed structural elements, enabling new possibilities for protein nanotechnology, for example, to improve the exposure of epitopes on nanoparticles (structural vaccinology), to engineer crystal contacts with minimal impact on construct flexibility (for the study of protein dynamics), and to design novel biomaterials.
Faculties and Departments:05 Faculty of Science > Departement Biozentrum > Services Biozentrum > Biophysics Facility (Sharpe)
UniBasel Contributors:Sharpe, Timothy
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Cell Press
ISSN:0969-2126
e-ISSN:1878-4186
Note:Publication type according to Uni Basel Research Database: Journal article
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Last Modified:27 Mar 2023 10:34
Deposited On:27 Mar 2023 10:34

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