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Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding

Coagulation factor V (FV) plays an anticoagulant role but serves as a procoagulant cofactor in the prothrombinase complex once activated to FVa. At the heart of these opposing effects is the proteolytic removal of its central B-domain, including conserved functional landmarks (basic region, BR; 963–...

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Autores principales: Petrillo, Teodolinda, Ayombil, Francis, van’t Veer, Cornelis, Camire, Rodney M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948760/
https://www.ncbi.nlm.nih.gov/pubmed/33376137
http://dx.doi.org/10.1074/jbc.RA120.016341
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author Petrillo, Teodolinda
Ayombil, Francis
van’t Veer, Cornelis
Camire, Rodney M.
author_facet Petrillo, Teodolinda
Ayombil, Francis
van’t Veer, Cornelis
Camire, Rodney M.
author_sort Petrillo, Teodolinda
collection PubMed
description Coagulation factor V (FV) plays an anticoagulant role but serves as a procoagulant cofactor in the prothrombinase complex once activated to FVa. At the heart of these opposing effects is the proteolytic removal of its central B-domain, including conserved functional landmarks (basic region, BR; 963–1008 and acidic region 2, AR2; 1493–1537) that enforce the inactive FV procofactor state. Tissue factor pathway inhibitor α (TFPIα) has been associated with FV as well as FV-short, a physiologically relevant isoform with a shortened B-domain missing the BR. However, it is unclear which forms of FV are physiologic ligands for TFPIα. Here, we characterize the binding and regulation of FV and FV-short by TFPIα via its positively charged C-terminus (TFPIα-BR) and examine how bond cleavage in the B-domain influences these interactions. We show that FV-short is constitutively active and functions in prothrombinase like FVa. Unlike FVa, FV-short binds with high affinity (K(d) ∼1 nM) to TFPIα-BR, which blocks procoagulant function unless FV-short is cleaved at Arg(1545), removing AR2. Importantly, we do not observe FV binding (μM detection limit) to TFPIα. However, cleavage at Arg(709) and Arg(1018) displaces the FV BR, exposing AR2 and allowing TFPIα to bind via its BR. We conclude that for full-length FV, the detachment of FV BR from AR2 is necessary and sufficient for TFPIα binding and regulation. Our findings pinpoint key forms of FV, including FV-short, that act as physiologic ligands for TFPIα and establish a mechanistic framework for assessing the functional connection between these proteins.
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spelling pubmed-79487602021-03-19 Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding Petrillo, Teodolinda Ayombil, Francis van’t Veer, Cornelis Camire, Rodney M. J Biol Chem Research Article Coagulation factor V (FV) plays an anticoagulant role but serves as a procoagulant cofactor in the prothrombinase complex once activated to FVa. At the heart of these opposing effects is the proteolytic removal of its central B-domain, including conserved functional landmarks (basic region, BR; 963–1008 and acidic region 2, AR2; 1493–1537) that enforce the inactive FV procofactor state. Tissue factor pathway inhibitor α (TFPIα) has been associated with FV as well as FV-short, a physiologically relevant isoform with a shortened B-domain missing the BR. However, it is unclear which forms of FV are physiologic ligands for TFPIα. Here, we characterize the binding and regulation of FV and FV-short by TFPIα via its positively charged C-terminus (TFPIα-BR) and examine how bond cleavage in the B-domain influences these interactions. We show that FV-short is constitutively active and functions in prothrombinase like FVa. Unlike FVa, FV-short binds with high affinity (K(d) ∼1 nM) to TFPIα-BR, which blocks procoagulant function unless FV-short is cleaved at Arg(1545), removing AR2. Importantly, we do not observe FV binding (μM detection limit) to TFPIα. However, cleavage at Arg(709) and Arg(1018) displaces the FV BR, exposing AR2 and allowing TFPIα to bind via its BR. We conclude that for full-length FV, the detachment of FV BR from AR2 is necessary and sufficient for TFPIα binding and regulation. Our findings pinpoint key forms of FV, including FV-short, that act as physiologic ligands for TFPIα and establish a mechanistic framework for assessing the functional connection between these proteins. American Society for Biochemistry and Molecular Biology 2021-01-07 /pmc/articles/PMC7948760/ /pubmed/33376137 http://dx.doi.org/10.1074/jbc.RA120.016341 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Petrillo, Teodolinda
Ayombil, Francis
van’t Veer, Cornelis
Camire, Rodney M.
Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title_full Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title_fullStr Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title_full_unstemmed Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title_short Regulation of factor V and factor V-short by TFPIα: Relationship between B-domain proteolysis and binding
title_sort regulation of factor v and factor v-short by tfpiα: relationship between b-domain proteolysis and binding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948760/
https://www.ncbi.nlm.nih.gov/pubmed/33376137
http://dx.doi.org/10.1074/jbc.RA120.016341
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