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A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures

Coiled-coil (CC) dimers are widely used in protein design because of their modularity and well-understood sequence–structure relationship. In CC protein origami design, a polypeptide chain is assembled from a defined sequence of CC building segments that determine the self-assembly of protein cages...

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Autores principales: Majerle, Andreja, Hadži, San, Aupič, Jana, Satler, Tadej, Lapenta, Fabio, Strmšek, Žiga, Lah, Jurij, Loris, Remy, Jerala, Roman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092592/
https://www.ncbi.nlm.nih.gov/pubmed/33893235
http://dx.doi.org/10.1073/pnas.2021899118
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author Majerle, Andreja
Hadži, San
Aupič, Jana
Satler, Tadej
Lapenta, Fabio
Strmšek, Žiga
Lah, Jurij
Loris, Remy
Jerala, Roman
author_facet Majerle, Andreja
Hadži, San
Aupič, Jana
Satler, Tadej
Lapenta, Fabio
Strmšek, Žiga
Lah, Jurij
Loris, Remy
Jerala, Roman
author_sort Majerle, Andreja
collection PubMed
description Coiled-coil (CC) dimers are widely used in protein design because of their modularity and well-understood sequence–structure relationship. In CC protein origami design, a polypeptide chain is assembled from a defined sequence of CC building segments that determine the self-assembly of protein cages into polyhedral shapes, such as the tetrahedron, triangular prism, or four-sided pyramid. However, a targeted functionalization of the CC modules could significantly expand the versatility of protein origami scaffolds. Here, we describe a panel of single-chain camelid antibodies (nanobodies) directed against different CC modules of a de novo designed protein origami tetrahedron. We show that these nanobodies are able to recognize the same CC modules in different polyhedral contexts, such as isolated CC dimers, tetrahedra, triangular prisms, or trigonal bipyramids, thereby extending the ability to functionalize polyhedra with nanobodies in a desired stoichiometry. Crystal structures of five nanobody-CC complexes in combination with small-angle X-ray scattering show binding interactions between nanobodies and CC dimers forming the edges of a tetrahedron with the nanobody entering the tetrahedral cavity. Furthermore, we identified a pair of allosteric nanobodies in which the binding to the distant epitopes on the antiparallel homodimeric APH CC is coupled via a strong positive cooperativity. A toolbox of well-characterized nanobodies specific for CC modules provides a unique tool to target defined sites in the designed protein structures, thus opening numerous opportunities for the functionalization of CC protein origami polyhedra or CC-based bionanomaterials.
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spelling pubmed-80925922021-05-12 A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures Majerle, Andreja Hadži, San Aupič, Jana Satler, Tadej Lapenta, Fabio Strmšek, Žiga Lah, Jurij Loris, Remy Jerala, Roman Proc Natl Acad Sci U S A Biological Sciences Coiled-coil (CC) dimers are widely used in protein design because of their modularity and well-understood sequence–structure relationship. In CC protein origami design, a polypeptide chain is assembled from a defined sequence of CC building segments that determine the self-assembly of protein cages into polyhedral shapes, such as the tetrahedron, triangular prism, or four-sided pyramid. However, a targeted functionalization of the CC modules could significantly expand the versatility of protein origami scaffolds. Here, we describe a panel of single-chain camelid antibodies (nanobodies) directed against different CC modules of a de novo designed protein origami tetrahedron. We show that these nanobodies are able to recognize the same CC modules in different polyhedral contexts, such as isolated CC dimers, tetrahedra, triangular prisms, or trigonal bipyramids, thereby extending the ability to functionalize polyhedra with nanobodies in a desired stoichiometry. Crystal structures of five nanobody-CC complexes in combination with small-angle X-ray scattering show binding interactions between nanobodies and CC dimers forming the edges of a tetrahedron with the nanobody entering the tetrahedral cavity. Furthermore, we identified a pair of allosteric nanobodies in which the binding to the distant epitopes on the antiparallel homodimeric APH CC is coupled via a strong positive cooperativity. A toolbox of well-characterized nanobodies specific for CC modules provides a unique tool to target defined sites in the designed protein structures, thus opening numerous opportunities for the functionalization of CC protein origami polyhedra or CC-based bionanomaterials. National Academy of Sciences 2021-04-27 2021-04-23 /pmc/articles/PMC8092592/ /pubmed/33893235 http://dx.doi.org/10.1073/pnas.2021899118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Majerle, Andreja
Hadži, San
Aupič, Jana
Satler, Tadej
Lapenta, Fabio
Strmšek, Žiga
Lah, Jurij
Loris, Remy
Jerala, Roman
A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title_full A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title_fullStr A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title_full_unstemmed A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title_short A nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
title_sort nanobody toolbox targeting dimeric coiled-coil modules for functionalization of designed protein origami structures
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092592/
https://www.ncbi.nlm.nih.gov/pubmed/33893235
http://dx.doi.org/10.1073/pnas.2021899118
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