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Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear

The plasmatic von Willebrand factor (VWF) circulates in a compact form unable to bind platelets. Upon shear stress, the VWF A1 domain is exposed, allowing VWF-binding to platelet glycoprotein Ib-V-IX (GPIbα chain). For a better understanding of the role of this interaction in cardiovascular disease,...

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Autores principales: Hrdinova, Johana, Fernández, Delia I., Ercig, Bogac, Tullemans, Bibian M. E., Suylen, Dennis P. L., Agten, Stijn M., Jurk, Kerstin, Hackeng, Tilman M., Vanhoorelbeke, Karen, Voorberg, Jan, Reutelingsperger, Chris P. M., Wichapong, Kanin, Heemskerk, Johan W. M., Nicolaes, Gerry A. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876638/
https://www.ncbi.nlm.nih.gov/pubmed/35216161
http://dx.doi.org/10.3390/ijms23042046
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author Hrdinova, Johana
Fernández, Delia I.
Ercig, Bogac
Tullemans, Bibian M. E.
Suylen, Dennis P. L.
Agten, Stijn M.
Jurk, Kerstin
Hackeng, Tilman M.
Vanhoorelbeke, Karen
Voorberg, Jan
Reutelingsperger, Chris P. M.
Wichapong, Kanin
Heemskerk, Johan W. M.
Nicolaes, Gerry A. F.
author_facet Hrdinova, Johana
Fernández, Delia I.
Ercig, Bogac
Tullemans, Bibian M. E.
Suylen, Dennis P. L.
Agten, Stijn M.
Jurk, Kerstin
Hackeng, Tilman M.
Vanhoorelbeke, Karen
Voorberg, Jan
Reutelingsperger, Chris P. M.
Wichapong, Kanin
Heemskerk, Johan W. M.
Nicolaes, Gerry A. F.
author_sort Hrdinova, Johana
collection PubMed
description The plasmatic von Willebrand factor (VWF) circulates in a compact form unable to bind platelets. Upon shear stress, the VWF A1 domain is exposed, allowing VWF-binding to platelet glycoprotein Ib-V-IX (GPIbα chain). For a better understanding of the role of this interaction in cardiovascular disease, molecules are needed to specifically interfere with the opened VWF A1 domain interaction with GPIbα. Therefore, we in silico designed and chemically synthetized stable cyclic peptides interfering with the platelet-binding of the VWF A1 domain per se or complexed with botrocetin. Selected peptides (26–34 amino acids) with the lowest-binding free energy were: the monocyclic mono- vOn Willebrand factoR-GPIbα InTerference (ORbIT) peptide and bicyclic bi-ORbIT peptide. Interference of the peptides in the binding of VWF to GPIb-V-IX interaction was retained by flow cytometry in comparison with the blocking of anti-VWF A1 domain antibody CLB-RAg35. In collagen and VWF-dependent whole-blood thrombus formation at a high shear rate, CLB-RAg35 suppressed stable platelet adhesion as well as the formation of multilayered thrombi. Both peptides phenotypically mimicked these changes, although they were less potent than CLB-RAg35. The second-round generation of an improved peptide, namely opt-mono-ORbIT (28 amino acids), showed an increased inhibitory activity under flow. Accordingly, our structure-based design of peptides resulted in physiologically effective peptide-based inhibitors, even for convoluted complexes such as GPIbα-VWF A1.
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spelling pubmed-88766382022-02-26 Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear Hrdinova, Johana Fernández, Delia I. Ercig, Bogac Tullemans, Bibian M. E. Suylen, Dennis P. L. Agten, Stijn M. Jurk, Kerstin Hackeng, Tilman M. Vanhoorelbeke, Karen Voorberg, Jan Reutelingsperger, Chris P. M. Wichapong, Kanin Heemskerk, Johan W. M. Nicolaes, Gerry A. F. Int J Mol Sci Article The plasmatic von Willebrand factor (VWF) circulates in a compact form unable to bind platelets. Upon shear stress, the VWF A1 domain is exposed, allowing VWF-binding to platelet glycoprotein Ib-V-IX (GPIbα chain). For a better understanding of the role of this interaction in cardiovascular disease, molecules are needed to specifically interfere with the opened VWF A1 domain interaction with GPIbα. Therefore, we in silico designed and chemically synthetized stable cyclic peptides interfering with the platelet-binding of the VWF A1 domain per se or complexed with botrocetin. Selected peptides (26–34 amino acids) with the lowest-binding free energy were: the monocyclic mono- vOn Willebrand factoR-GPIbα InTerference (ORbIT) peptide and bicyclic bi-ORbIT peptide. Interference of the peptides in the binding of VWF to GPIb-V-IX interaction was retained by flow cytometry in comparison with the blocking of anti-VWF A1 domain antibody CLB-RAg35. In collagen and VWF-dependent whole-blood thrombus formation at a high shear rate, CLB-RAg35 suppressed stable platelet adhesion as well as the formation of multilayered thrombi. Both peptides phenotypically mimicked these changes, although they were less potent than CLB-RAg35. The second-round generation of an improved peptide, namely opt-mono-ORbIT (28 amino acids), showed an increased inhibitory activity under flow. Accordingly, our structure-based design of peptides resulted in physiologically effective peptide-based inhibitors, even for convoluted complexes such as GPIbα-VWF A1. MDPI 2022-02-12 /pmc/articles/PMC8876638/ /pubmed/35216161 http://dx.doi.org/10.3390/ijms23042046 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hrdinova, Johana
Fernández, Delia I.
Ercig, Bogac
Tullemans, Bibian M. E.
Suylen, Dennis P. L.
Agten, Stijn M.
Jurk, Kerstin
Hackeng, Tilman M.
Vanhoorelbeke, Karen
Voorberg, Jan
Reutelingsperger, Chris P. M.
Wichapong, Kanin
Heemskerk, Johan W. M.
Nicolaes, Gerry A. F.
Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title_full Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title_fullStr Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title_full_unstemmed Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title_short Structure-Based Cyclic Glycoprotein Ibα-Derived Peptides Interfering with von Willebrand Factor-Binding, Affecting Platelet Aggregation under Shear
title_sort structure-based cyclic glycoprotein ibα-derived peptides interfering with von willebrand factor-binding, affecting platelet aggregation under shear
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876638/
https://www.ncbi.nlm.nih.gov/pubmed/35216161
http://dx.doi.org/10.3390/ijms23042046
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