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Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)

We previously designed a new family of artificial proteins named αRep based on a subgroup of thermostable helicoidal HEAT-like repeats. We have now assembled a large optimized αRep library. In this library, the side chains at each variable position are not fully randomized but instead encoded by a d...

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Autores principales: Guellouz, Asma, Valerio-Lepiniec, Marie, Urvoas, Agathe, Chevrel, Anne, Graille, Marc, Fourati-Kammoun, Zaineb, Desmadril, Michel, van Tilbeurgh, Herman, Minard, Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3754942/
https://www.ncbi.nlm.nih.gov/pubmed/24014183
http://dx.doi.org/10.1371/journal.pone.0071512
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author Guellouz, Asma
Valerio-Lepiniec, Marie
Urvoas, Agathe
Chevrel, Anne
Graille, Marc
Fourati-Kammoun, Zaineb
Desmadril, Michel
van Tilbeurgh, Herman
Minard, Philippe
author_facet Guellouz, Asma
Valerio-Lepiniec, Marie
Urvoas, Agathe
Chevrel, Anne
Graille, Marc
Fourati-Kammoun, Zaineb
Desmadril, Michel
van Tilbeurgh, Herman
Minard, Philippe
author_sort Guellouz, Asma
collection PubMed
description We previously designed a new family of artificial proteins named αRep based on a subgroup of thermostable helicoidal HEAT-like repeats. We have now assembled a large optimized αRep library. In this library, the side chains at each variable position are not fully randomized but instead encoded by a distribution of codons based on the natural frequency of side chains of the natural repeats family. The library construction is based on a polymerization of micro-genes and therefore results in a distribution of proteins with a variable number of repeats. We improved the library construction process using a “filtration” procedure to retain only fully coding modules that were recombined to recreate sequence diversity. The final library named Lib2.1 contains 1.7×10(9) independent clones. Here, we used phage display to select, from the previously described library or from the new library, new specific αRep proteins binding to four different non-related predefined protein targets. Specific binders were selected in each case. The results show that binders with various sizes are selected including relatively long sequences, with up to 7 repeats. ITC-measured affinities vary with K(d) values ranging from micromolar to nanomolar ranges. The formation of complexes is associated with a significant thermal stabilization of the bound target protein. The crystal structures of two complexes between αRep and their cognate targets were solved and show that the new interfaces are established by the variable surfaces of the repeated modules, as well by the variable N-cap residues. These results suggest that αRep library is a new and versatile source of tight and specific binding proteins with favorable biophysical properties.
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spelling pubmed-37549422013-09-06 Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep) Guellouz, Asma Valerio-Lepiniec, Marie Urvoas, Agathe Chevrel, Anne Graille, Marc Fourati-Kammoun, Zaineb Desmadril, Michel van Tilbeurgh, Herman Minard, Philippe PLoS One Research Article We previously designed a new family of artificial proteins named αRep based on a subgroup of thermostable helicoidal HEAT-like repeats. We have now assembled a large optimized αRep library. In this library, the side chains at each variable position are not fully randomized but instead encoded by a distribution of codons based on the natural frequency of side chains of the natural repeats family. The library construction is based on a polymerization of micro-genes and therefore results in a distribution of proteins with a variable number of repeats. We improved the library construction process using a “filtration” procedure to retain only fully coding modules that were recombined to recreate sequence diversity. The final library named Lib2.1 contains 1.7×10(9) independent clones. Here, we used phage display to select, from the previously described library or from the new library, new specific αRep proteins binding to four different non-related predefined protein targets. Specific binders were selected in each case. The results show that binders with various sizes are selected including relatively long sequences, with up to 7 repeats. ITC-measured affinities vary with K(d) values ranging from micromolar to nanomolar ranges. The formation of complexes is associated with a significant thermal stabilization of the bound target protein. The crystal structures of two complexes between αRep and their cognate targets were solved and show that the new interfaces are established by the variable surfaces of the repeated modules, as well by the variable N-cap residues. These results suggest that αRep library is a new and versatile source of tight and specific binding proteins with favorable biophysical properties. Public Library of Science 2013-08-27 /pmc/articles/PMC3754942/ /pubmed/24014183 http://dx.doi.org/10.1371/journal.pone.0071512 Text en © 2013 Guellouz et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Guellouz, Asma
Valerio-Lepiniec, Marie
Urvoas, Agathe
Chevrel, Anne
Graille, Marc
Fourati-Kammoun, Zaineb
Desmadril, Michel
van Tilbeurgh, Herman
Minard, Philippe
Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title_full Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title_fullStr Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title_full_unstemmed Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title_short Selection of Specific Protein Binders for Pre-Defined Targets from an Optimized Library of Artificial Helicoidal Repeat Proteins (alphaRep)
title_sort selection of specific protein binders for pre-defined targets from an optimized library of artificial helicoidal repeat proteins (alpharep)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3754942/
https://www.ncbi.nlm.nih.gov/pubmed/24014183
http://dx.doi.org/10.1371/journal.pone.0071512
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