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New Infestin-4 Mutants with Increased Selectivity against Factor XIIa

Factor XIIa (fXIIa) is a serine protease that triggers the coagulation contact pathway and plays a role in thrombosis. Because it interferes with coagulation testing, the need to inhibit fXIIa exists in many cases. Infestin-4 (Inf4) is a Kazal-type inhibitor of fXIIa. Its specificity for fXIIa can b...

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Autores principales: Kolyadko, Vladimir N., Lushchekina, Sofya V., Vuimo, Tatiana A., Surov, Stepan S., Ovsepyan, Ruzanna A., Korneeva, Vera A., Vorobiev, Ivan I., Orlova, Nadezhda A., Minakhin, Leonid, Kuznedelov, Konstantin, Severinov, Konstantin V., Ataullakhanov, Fazoil I., Panteleev, Mikhail A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684401/
https://www.ncbi.nlm.nih.gov/pubmed/26670620
http://dx.doi.org/10.1371/journal.pone.0144940
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author Kolyadko, Vladimir N.
Lushchekina, Sofya V.
Vuimo, Tatiana A.
Surov, Stepan S.
Ovsepyan, Ruzanna A.
Korneeva, Vera A.
Vorobiev, Ivan I.
Orlova, Nadezhda A.
Minakhin, Leonid
Kuznedelov, Konstantin
Severinov, Konstantin V.
Ataullakhanov, Fazoil I.
Panteleev, Mikhail A.
author_facet Kolyadko, Vladimir N.
Lushchekina, Sofya V.
Vuimo, Tatiana A.
Surov, Stepan S.
Ovsepyan, Ruzanna A.
Korneeva, Vera A.
Vorobiev, Ivan I.
Orlova, Nadezhda A.
Minakhin, Leonid
Kuznedelov, Konstantin
Severinov, Konstantin V.
Ataullakhanov, Fazoil I.
Panteleev, Mikhail A.
author_sort Kolyadko, Vladimir N.
collection PubMed
description Factor XIIa (fXIIa) is a serine protease that triggers the coagulation contact pathway and plays a role in thrombosis. Because it interferes with coagulation testing, the need to inhibit fXIIa exists in many cases. Infestin-4 (Inf4) is a Kazal-type inhibitor of fXIIa. Its specificity for fXIIa can be enhanced by point mutations in the protease-binding loop. We attempted to adapt Inf4 for the selective repression of the contact pathway under various in vitro conditions, e.g., during blood collection and in ‘global’ assays of tissue factor (TF)-dependent coagulation. First, we designed a set of new Inf4 mutants that, in contrast to wt-Inf4, had stabilized canonical conformations during molecular dynamics simulation. Off-target activities against factor Xa (fXa), plasmin, and other coagulation proteases were either reduced or eliminated in these recombinant mutants, as demonstrated by chromogenic assays. Interactions with fXIIa and fXa were also analyzed using protein-protein docking. Next, Mutant B, one of the most potent mutants (its K (i) for fXIIa is 0.7 nM) was tested in plasma. At concentrations 5–20 μM, this mutant delayed the contact-activated generation of thrombin, as well as clotting in thromboelastography and thrombodynamics assays. In these assays, Mutant B did not affect coagulation initiated by TF, thus demonstrating sufficient selectivity and its potential practical significance as a reagent for coagulation diagnostics.
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spelling pubmed-46844012015-12-31 New Infestin-4 Mutants with Increased Selectivity against Factor XIIa Kolyadko, Vladimir N. Lushchekina, Sofya V. Vuimo, Tatiana A. Surov, Stepan S. Ovsepyan, Ruzanna A. Korneeva, Vera A. Vorobiev, Ivan I. Orlova, Nadezhda A. Minakhin, Leonid Kuznedelov, Konstantin Severinov, Konstantin V. Ataullakhanov, Fazoil I. Panteleev, Mikhail A. PLoS One Research Article Factor XIIa (fXIIa) is a serine protease that triggers the coagulation contact pathway and plays a role in thrombosis. Because it interferes with coagulation testing, the need to inhibit fXIIa exists in many cases. Infestin-4 (Inf4) is a Kazal-type inhibitor of fXIIa. Its specificity for fXIIa can be enhanced by point mutations in the protease-binding loop. We attempted to adapt Inf4 for the selective repression of the contact pathway under various in vitro conditions, e.g., during blood collection and in ‘global’ assays of tissue factor (TF)-dependent coagulation. First, we designed a set of new Inf4 mutants that, in contrast to wt-Inf4, had stabilized canonical conformations during molecular dynamics simulation. Off-target activities against factor Xa (fXa), plasmin, and other coagulation proteases were either reduced or eliminated in these recombinant mutants, as demonstrated by chromogenic assays. Interactions with fXIIa and fXa were also analyzed using protein-protein docking. Next, Mutant B, one of the most potent mutants (its K (i) for fXIIa is 0.7 nM) was tested in plasma. At concentrations 5–20 μM, this mutant delayed the contact-activated generation of thrombin, as well as clotting in thromboelastography and thrombodynamics assays. In these assays, Mutant B did not affect coagulation initiated by TF, thus demonstrating sufficient selectivity and its potential practical significance as a reagent for coagulation diagnostics. Public Library of Science 2015-12-15 /pmc/articles/PMC4684401/ /pubmed/26670620 http://dx.doi.org/10.1371/journal.pone.0144940 Text en © 2015 Kolyadko et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kolyadko, Vladimir N.
Lushchekina, Sofya V.
Vuimo, Tatiana A.
Surov, Stepan S.
Ovsepyan, Ruzanna A.
Korneeva, Vera A.
Vorobiev, Ivan I.
Orlova, Nadezhda A.
Minakhin, Leonid
Kuznedelov, Konstantin
Severinov, Konstantin V.
Ataullakhanov, Fazoil I.
Panteleev, Mikhail A.
New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title_full New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title_fullStr New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title_full_unstemmed New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title_short New Infestin-4 Mutants with Increased Selectivity against Factor XIIa
title_sort new infestin-4 mutants with increased selectivity against factor xiia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4684401/
https://www.ncbi.nlm.nih.gov/pubmed/26670620
http://dx.doi.org/10.1371/journal.pone.0144940
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