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A directional switch of integrin signaling and a new anti-thrombotic strategy

Integrins are critical in thrombosis and hemostasis(1). Antagonists of the platelet integrin α(IIb)β(3) are potent anti-thrombotic drugs, but also have the life-threatening adverse effect of bleeding(2,3). It is thus desirable to develop new antagonists that do not cause bleeding. Integrins transmit...

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Autores principales: Shen, Bo, Zhao, Xiaojuan, O’Brien, Kelly A., Stojanovic-Terpo, Aleksandra, Delaney, M. Keegan, Kim, Kyungho, Cho, Jaehyung, Lam, Stephen C.-T., Du, Xiaoping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3823815/
https://www.ncbi.nlm.nih.gov/pubmed/24162846
http://dx.doi.org/10.1038/nature12613
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author Shen, Bo
Zhao, Xiaojuan
O’Brien, Kelly A.
Stojanovic-Terpo, Aleksandra
Delaney, M. Keegan
Kim, Kyungho
Cho, Jaehyung
Lam, Stephen C.-T.
Du, Xiaoping
author_facet Shen, Bo
Zhao, Xiaojuan
O’Brien, Kelly A.
Stojanovic-Terpo, Aleksandra
Delaney, M. Keegan
Kim, Kyungho
Cho, Jaehyung
Lam, Stephen C.-T.
Du, Xiaoping
author_sort Shen, Bo
collection PubMed
description Integrins are critical in thrombosis and hemostasis(1). Antagonists of the platelet integrin α(IIb)β(3) are potent anti-thrombotic drugs, but also have the life-threatening adverse effect of bleeding(2,3). It is thus desirable to develop new antagonists that do not cause bleeding. Integrins transmit signals bidirectionally(4,5). Inside-out signaling activates integrins via a talin-dependent mechanism(6,7). Integrin ligation mediates thrombus formation and outside-in signaling(8,9), which requires Gα(13) and greatly expands thrombi. Here we show that Gα(13) and talin bind to mutually exclusive, but distinct sites within the integrin β(3) cytoplasmic domain in opposing waves. The first talin binding wave mediates inside-out signaling and also “ligand-induced integrin activation”, but is not required for outside-in signaling. Integrin ligation induces transient talin dissociation and Gα(13) binding to an ExE motif, which selectively mediates outside-in signaling and platelet spreading. The second talin binding wave is associated with clot retraction. An ExE motif-based inhibitor of Gα(13)-integrin interaction selectively abolishes outside-in signaling without affecting integrin ligation, and suppresses occlusive arterial thrombosis without affecting bleeding time. Thus, we have discovered a novel mechanism for the directional switch of integrin signaling and, based on this mechanism, we designed a potent new anti-thrombotic that does not cause bleeding.
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spelling pubmed-38238152014-05-07 A directional switch of integrin signaling and a new anti-thrombotic strategy Shen, Bo Zhao, Xiaojuan O’Brien, Kelly A. Stojanovic-Terpo, Aleksandra Delaney, M. Keegan Kim, Kyungho Cho, Jaehyung Lam, Stephen C.-T. Du, Xiaoping Nature Article Integrins are critical in thrombosis and hemostasis(1). Antagonists of the platelet integrin α(IIb)β(3) are potent anti-thrombotic drugs, but also have the life-threatening adverse effect of bleeding(2,3). It is thus desirable to develop new antagonists that do not cause bleeding. Integrins transmit signals bidirectionally(4,5). Inside-out signaling activates integrins via a talin-dependent mechanism(6,7). Integrin ligation mediates thrombus formation and outside-in signaling(8,9), which requires Gα(13) and greatly expands thrombi. Here we show that Gα(13) and talin bind to mutually exclusive, but distinct sites within the integrin β(3) cytoplasmic domain in opposing waves. The first talin binding wave mediates inside-out signaling and also “ligand-induced integrin activation”, but is not required for outside-in signaling. Integrin ligation induces transient talin dissociation and Gα(13) binding to an ExE motif, which selectively mediates outside-in signaling and platelet spreading. The second talin binding wave is associated with clot retraction. An ExE motif-based inhibitor of Gα(13)-integrin interaction selectively abolishes outside-in signaling without affecting integrin ligation, and suppresses occlusive arterial thrombosis without affecting bleeding time. Thus, we have discovered a novel mechanism for the directional switch of integrin signaling and, based on this mechanism, we designed a potent new anti-thrombotic that does not cause bleeding. 2013-10-27 2013-11-07 /pmc/articles/PMC3823815/ /pubmed/24162846 http://dx.doi.org/10.1038/nature12613 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Shen, Bo
Zhao, Xiaojuan
O’Brien, Kelly A.
Stojanovic-Terpo, Aleksandra
Delaney, M. Keegan
Kim, Kyungho
Cho, Jaehyung
Lam, Stephen C.-T.
Du, Xiaoping
A directional switch of integrin signaling and a new anti-thrombotic strategy
title A directional switch of integrin signaling and a new anti-thrombotic strategy
title_full A directional switch of integrin signaling and a new anti-thrombotic strategy
title_fullStr A directional switch of integrin signaling and a new anti-thrombotic strategy
title_full_unstemmed A directional switch of integrin signaling and a new anti-thrombotic strategy
title_short A directional switch of integrin signaling and a new anti-thrombotic strategy
title_sort directional switch of integrin signaling and a new anti-thrombotic strategy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3823815/
https://www.ncbi.nlm.nih.gov/pubmed/24162846
http://dx.doi.org/10.1038/nature12613
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