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The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding
Multimerin 1 (MMRN1) is a massive, homopolymeric protein that is stored in platelets and endothelial cells for activation-induced release. In vitro, MMRN1 binds to the outer surfaces of activated platelets and endothelial cells, the extracellular matrix (including collagen) and von Willebrand factor...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Schattauer
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175582/ https://www.ncbi.nlm.nih.gov/pubmed/27052467 http://dx.doi.org/10.1160/TH15-09-0700 |
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author | Parker, D’Andra N. Tasneem, Subia Farndale, Richard W. Bihan, Dominique Sadler, J. Evan Sebastian, Silvie De Groot, Philip G. Hayward, Catherine P. M. |
author_facet | Parker, D’Andra N. Tasneem, Subia Farndale, Richard W. Bihan, Dominique Sadler, J. Evan Sebastian, Silvie De Groot, Philip G. Hayward, Catherine P. M. |
author_sort | Parker, D’Andra N. |
collection | PubMed |
description | Multimerin 1 (MMRN1) is a massive, homopolymeric protein that is stored in platelets and endothelial cells for activation-induced release. In vitro, MMRN1 binds to the outer surfaces of activated platelets and endothelial cells, the extracellular matrix (including collagen) and von Willebrand factor (VWF) to support platelet adhesive functions. VWF associates with MMRN1 at high shear, not static conditions, suggesting that shear exposes cryptic sites within VWF that support MMRN1 binding. Modified ELISA and surface plasmon resonance were used to study the structural features of VWF that support MMRN1 binding, and determine the affinities for VWF-MMRN1 binding. High shear microfluidic platelet adhesion assays determined the functional consequences for VWF-MMRN1 binding. VWF binding to MMRN1 was enhanced by shear exposure and ristocetin, and required VWF A1A2A3 region, specifically the A1 and A3 domains. VWF A1A2A3 bound to MMRN1 with a physiologically relevant binding affinity (K(D): 2.0 ± 0.4 nM), whereas the individual VWF A1 (K(D): 39.3 ± 7.7 nM) and A3 domains (K(D): 229 ± 114 nM) bound to MMRN1 with lower affinities. VWF A1A2A3 was also sufficient to support the adhesion of resting platelets to MMRN1 at high shear, by a mechanism dependent on VWF-GPIbα binding. Our study provides new information on the molecular basis of MMRN1 binding to VWF, and its role in supporting platelet adhesion at high shear. We propose that at sites of vessel injury, MMRN1 that is released following activation of platelets and endothelial cells, binds to VWF A1A2A3 region to support platelet adhesion at arterial shear rates. |
format | Online Article Text |
id | pubmed-5175582 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Schattauer |
record_format | MEDLINE/PubMed |
spelling | pubmed-51755822017-01-03 The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding Parker, D’Andra N. Tasneem, Subia Farndale, Richard W. Bihan, Dominique Sadler, J. Evan Sebastian, Silvie De Groot, Philip G. Hayward, Catherine P. M. Thromb Haemost Cellular Haemostasis and Platelets Multimerin 1 (MMRN1) is a massive, homopolymeric protein that is stored in platelets and endothelial cells for activation-induced release. In vitro, MMRN1 binds to the outer surfaces of activated platelets and endothelial cells, the extracellular matrix (including collagen) and von Willebrand factor (VWF) to support platelet adhesive functions. VWF associates with MMRN1 at high shear, not static conditions, suggesting that shear exposes cryptic sites within VWF that support MMRN1 binding. Modified ELISA and surface plasmon resonance were used to study the structural features of VWF that support MMRN1 binding, and determine the affinities for VWF-MMRN1 binding. High shear microfluidic platelet adhesion assays determined the functional consequences for VWF-MMRN1 binding. VWF binding to MMRN1 was enhanced by shear exposure and ristocetin, and required VWF A1A2A3 region, specifically the A1 and A3 domains. VWF A1A2A3 bound to MMRN1 with a physiologically relevant binding affinity (K(D): 2.0 ± 0.4 nM), whereas the individual VWF A1 (K(D): 39.3 ± 7.7 nM) and A3 domains (K(D): 229 ± 114 nM) bound to MMRN1 with lower affinities. VWF A1A2A3 was also sufficient to support the adhesion of resting platelets to MMRN1 at high shear, by a mechanism dependent on VWF-GPIbα binding. Our study provides new information on the molecular basis of MMRN1 binding to VWF, and its role in supporting platelet adhesion at high shear. We propose that at sites of vessel injury, MMRN1 that is released following activation of platelets and endothelial cells, binds to VWF A1A2A3 region to support platelet adhesion at arterial shear rates. Schattauer 2016-04-07 2016-07-05 /pmc/articles/PMC5175582/ /pubmed/27052467 http://dx.doi.org/10.1160/TH15-09-0700 Text en © Copyright Schattauer 2016 https://creativecommons.org/licenses/by/4.0/ License terms: CC-BY (https://creativecommons.org/licenses/by/4.0) |
spellingShingle | Cellular Haemostasis and Platelets Parker, D’Andra N. Tasneem, Subia Farndale, Richard W. Bihan, Dominique Sadler, J. Evan Sebastian, Silvie De Groot, Philip G. Hayward, Catherine P. M. The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title | The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title_full | The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title_fullStr | The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title_full_unstemmed | The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title_short | The Functions of the A1A2A3 Domains in Von Willebrand Factor Include Multimerin 1 Binding |
title_sort | functions of the a1a2a3 domains in von willebrand factor include multimerin 1 binding |
topic | Cellular Haemostasis and Platelets |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5175582/ https://www.ncbi.nlm.nih.gov/pubmed/27052467 http://dx.doi.org/10.1160/TH15-09-0700 |
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