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Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display

Tie2 is a receptor tyrosine kinase that is essential for the development and maintenance of blood vessels through binding the soluble ligands angiopoietin 1 (Ang1) and 2 (Ang2). Ang1 is constitutively produced by perivascular cells and is protective of the adult vasculature. Ang2 plays an important...

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Autores principales: Brindle, Nicholas P. J., Sale, Julian E., Arakawa, Hiroshi, Buerstedde, Jean-Marie, Nuamchit, Teonchit, Sharma, Shikha, Steele, Kathryn H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3829167/
https://www.ncbi.nlm.nih.gov/pubmed/24106271
http://dx.doi.org/10.1074/jbc.M113.510578
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author Brindle, Nicholas P. J.
Sale, Julian E.
Arakawa, Hiroshi
Buerstedde, Jean-Marie
Nuamchit, Teonchit
Sharma, Shikha
Steele, Kathryn H.
author_facet Brindle, Nicholas P. J.
Sale, Julian E.
Arakawa, Hiroshi
Buerstedde, Jean-Marie
Nuamchit, Teonchit
Sharma, Shikha
Steele, Kathryn H.
author_sort Brindle, Nicholas P. J.
collection PubMed
description Tie2 is a receptor tyrosine kinase that is essential for the development and maintenance of blood vessels through binding the soluble ligands angiopoietin 1 (Ang1) and 2 (Ang2). Ang1 is constitutively produced by perivascular cells and is protective of the adult vasculature. Ang2 plays an important role in blood vessel formation and is normally expressed during development. However, its re-expression in disease states, including cancer and sepsis, results in destabilization of blood vessels contributing to the pathology of these conditions. Ang2 is thus an attractive therapeutic target. Here we report the directed evolution of a ligand trap for Ang2 by harnessing the B cell somatic hypermutation machinery and coupling this to selectable cell surface display of a Tie2 ectodomain. Directed evolution produced an unexpected combination of mutations resulting in loss of Ang1 binding but maintenance of Ang2 binding. A soluble form of the evolved ectodomain binds Ang2 but not Ang1. Furthermore, the soluble evolved ectodomain blocks Ang2 effects on endothelial cells without interfering with Ang1 activity. Our study has created a novel Ang2 ligand trap and provided proof of concept for combining surface display and exogenous gene diversification in B cells for evolution of a non-immunoglobulin target.
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spelling pubmed-38291672013-11-15 Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display Brindle, Nicholas P. J. Sale, Julian E. Arakawa, Hiroshi Buerstedde, Jean-Marie Nuamchit, Teonchit Sharma, Shikha Steele, Kathryn H. J Biol Chem Protein Structure and Folding Tie2 is a receptor tyrosine kinase that is essential for the development and maintenance of blood vessels through binding the soluble ligands angiopoietin 1 (Ang1) and 2 (Ang2). Ang1 is constitutively produced by perivascular cells and is protective of the adult vasculature. Ang2 plays an important role in blood vessel formation and is normally expressed during development. However, its re-expression in disease states, including cancer and sepsis, results in destabilization of blood vessels contributing to the pathology of these conditions. Ang2 is thus an attractive therapeutic target. Here we report the directed evolution of a ligand trap for Ang2 by harnessing the B cell somatic hypermutation machinery and coupling this to selectable cell surface display of a Tie2 ectodomain. Directed evolution produced an unexpected combination of mutations resulting in loss of Ang1 binding but maintenance of Ang2 binding. A soluble form of the evolved ectodomain binds Ang2 but not Ang1. Furthermore, the soluble evolved ectodomain blocks Ang2 effects on endothelial cells without interfering with Ang1 activity. Our study has created a novel Ang2 ligand trap and provided proof of concept for combining surface display and exogenous gene diversification in B cells for evolution of a non-immunoglobulin target. American Society for Biochemistry and Molecular Biology 2013-11-15 2013-10-08 /pmc/articles/PMC3829167/ /pubmed/24106271 http://dx.doi.org/10.1074/jbc.M113.510578 Text en © 2013 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Protein Structure and Folding
Brindle, Nicholas P. J.
Sale, Julian E.
Arakawa, Hiroshi
Buerstedde, Jean-Marie
Nuamchit, Teonchit
Sharma, Shikha
Steele, Kathryn H.
Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title_full Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title_fullStr Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title_full_unstemmed Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title_short Directed Evolution of an Angiopoietin-2 Ligand Trap by Somatic Hypermutation and Cell Surface Display
title_sort directed evolution of an angiopoietin-2 ligand trap by somatic hypermutation and cell surface display
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3829167/
https://www.ncbi.nlm.nih.gov/pubmed/24106271
http://dx.doi.org/10.1074/jbc.M113.510578
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