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Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis

Tick saliva is a rich source of modulators of vascular biology. We have characterized Ixonnexin, a member of the “Basic-tail” family of salivary proteins from the tick Ixodes scapularis. Ixonnexin is a 104 residues (11.8 KDa), non-enzymatic basic protein which contains 3 disulfide bonds and a C-term...

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Autores principales: Assumpção, Teresa C., Mizurini, Daniella M., Ma, Dongying, Monteiro, Robson Q., Ahlstedt, Sydney, Reyes, Morayma, Kotsyfakis, Michail, Mather, Thomas N., Andersen, John F., Lukszo, Jan, Ribeiro, José M. C., Francischetti, Ivo M. B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859130/
https://www.ncbi.nlm.nih.gov/pubmed/29555911
http://dx.doi.org/10.1038/s41598-018-22780-1
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author Assumpção, Teresa C.
Mizurini, Daniella M.
Ma, Dongying
Monteiro, Robson Q.
Ahlstedt, Sydney
Reyes, Morayma
Kotsyfakis, Michail
Mather, Thomas N.
Andersen, John F.
Lukszo, Jan
Ribeiro, José M. C.
Francischetti, Ivo M. B.
author_facet Assumpção, Teresa C.
Mizurini, Daniella M.
Ma, Dongying
Monteiro, Robson Q.
Ahlstedt, Sydney
Reyes, Morayma
Kotsyfakis, Michail
Mather, Thomas N.
Andersen, John F.
Lukszo, Jan
Ribeiro, José M. C.
Francischetti, Ivo M. B.
author_sort Assumpção, Teresa C.
collection PubMed
description Tick saliva is a rich source of modulators of vascular biology. We have characterized Ixonnexin, a member of the “Basic-tail” family of salivary proteins from the tick Ixodes scapularis. Ixonnexin is a 104 residues (11.8 KDa), non-enzymatic basic protein which contains 3 disulfide bonds and a C-terminal rich in lysine. It is homologous to SALP14, a tick salivary FXa anticoagulant. Ixonnexin was produced by ligation of synthesized fragments (51–104) and (1–50) followed by folding. Ixonnexin, like SALP14, interacts with FXa. Notably, Ixonnexin also modulates fibrinolysis in vitro by a unique salivary mechanism. Accordingly, it accelerates plasminogen activation by tissue-type plasminogen activator (t-PA) with Km 100 nM; however, it does not affect urokinase-mediated fibrinolysis. Additionally, lysine analogue ε-aminocaproic acid inhibits Ixonnexin-mediated plasmin generation implying that lysine-binding sites of Kringle domain(s) of plasminogen or t-PA are involved in this process. Moreover, surface plasmon resonance experiments shows that Ixonnexin binds t-PA, and plasminogen (K(D) 10 nM), but not urokinase. These results imply that Ixonnexin promotes fibrinolysis by supporting the interaction of plasminogen with t-PA through formation of an enzymatically productive ternary complex. Finally, in vivo experiments demonstrates that Ixonnexin inhibits FeCl(3)-induced thrombosis in mice. Ixonnexin emerges as novel modulator of fibrinolysis which may also affect parasite-vector-host interactions.
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spelling pubmed-58591302018-03-20 Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis Assumpção, Teresa C. Mizurini, Daniella M. Ma, Dongying Monteiro, Robson Q. Ahlstedt, Sydney Reyes, Morayma Kotsyfakis, Michail Mather, Thomas N. Andersen, John F. Lukszo, Jan Ribeiro, José M. C. Francischetti, Ivo M. B. Sci Rep Article Tick saliva is a rich source of modulators of vascular biology. We have characterized Ixonnexin, a member of the “Basic-tail” family of salivary proteins from the tick Ixodes scapularis. Ixonnexin is a 104 residues (11.8 KDa), non-enzymatic basic protein which contains 3 disulfide bonds and a C-terminal rich in lysine. It is homologous to SALP14, a tick salivary FXa anticoagulant. Ixonnexin was produced by ligation of synthesized fragments (51–104) and (1–50) followed by folding. Ixonnexin, like SALP14, interacts with FXa. Notably, Ixonnexin also modulates fibrinolysis in vitro by a unique salivary mechanism. Accordingly, it accelerates plasminogen activation by tissue-type plasminogen activator (t-PA) with Km 100 nM; however, it does not affect urokinase-mediated fibrinolysis. Additionally, lysine analogue ε-aminocaproic acid inhibits Ixonnexin-mediated plasmin generation implying that lysine-binding sites of Kringle domain(s) of plasminogen or t-PA are involved in this process. Moreover, surface plasmon resonance experiments shows that Ixonnexin binds t-PA, and plasminogen (K(D) 10 nM), but not urokinase. These results imply that Ixonnexin promotes fibrinolysis by supporting the interaction of plasminogen with t-PA through formation of an enzymatically productive ternary complex. Finally, in vivo experiments demonstrates that Ixonnexin inhibits FeCl(3)-induced thrombosis in mice. Ixonnexin emerges as novel modulator of fibrinolysis which may also affect parasite-vector-host interactions. Nature Publishing Group UK 2018-03-19 /pmc/articles/PMC5859130/ /pubmed/29555911 http://dx.doi.org/10.1038/s41598-018-22780-1 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Assumpção, Teresa C.
Mizurini, Daniella M.
Ma, Dongying
Monteiro, Robson Q.
Ahlstedt, Sydney
Reyes, Morayma
Kotsyfakis, Michail
Mather, Thomas N.
Andersen, John F.
Lukszo, Jan
Ribeiro, José M. C.
Francischetti, Ivo M. B.
Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title_full Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title_fullStr Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title_full_unstemmed Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title_short Ixonnexin from Tick Saliva Promotes Fibrinolysis by Interacting with Plasminogen and Tissue-Type Plasminogen Activator, and Prevents Arterial Thrombosis
title_sort ixonnexin from tick saliva promotes fibrinolysis by interacting with plasminogen and tissue-type plasminogen activator, and prevents arterial thrombosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859130/
https://www.ncbi.nlm.nih.gov/pubmed/29555911
http://dx.doi.org/10.1038/s41598-018-22780-1
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