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Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency

Antithrombin is a crucial anticoagulant serpin whose even moderate deficiency significantly increases the risk of thrombosis. Most cases with antithrombin deficiency carried genetic defects affecting exons or flanking regions of SERPINC1.We aimed to identify regulatory mutations inSERPINC1 through s...

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Autores principales: Toderici, Mara, de la Morena-Barrio, María Eugenia, Padilla, José, Miñano, Antonia, Antón, Ana Isabel, Iniesta, Juan Antonio, Herranz, María Teresa, Fernández, Nuria, Vicente, Vicente, Corral, Javier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4803246/
https://www.ncbi.nlm.nih.gov/pubmed/27003919
http://dx.doi.org/10.1371/journal.pone.0152159
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author Toderici, Mara
de la Morena-Barrio, María Eugenia
Padilla, José
Miñano, Antonia
Antón, Ana Isabel
Iniesta, Juan Antonio
Herranz, María Teresa
Fernández, Nuria
Vicente, Vicente
Corral, Javier
author_facet Toderici, Mara
de la Morena-Barrio, María Eugenia
Padilla, José
Miñano, Antonia
Antón, Ana Isabel
Iniesta, Juan Antonio
Herranz, María Teresa
Fernández, Nuria
Vicente, Vicente
Corral, Javier
author_sort Toderici, Mara
collection PubMed
description Antithrombin is a crucial anticoagulant serpin whose even moderate deficiency significantly increases the risk of thrombosis. Most cases with antithrombin deficiency carried genetic defects affecting exons or flanking regions of SERPINC1.We aimed to identify regulatory mutations inSERPINC1 through sequencing the promoter, intron 1 and 2 of this gene in 23 patients with antithrombin deficiency but without known genetic defects. Three cases with moderate antithrombin deficiency (63–78%) carried potential regulatory mutations. One located 200 bp before the initiation ATG and two in intron 1. These mutations disrupted two out of five potential vitamin D receptor elements (VDRE) identified in SERPINC1 with different software. One genetic defect, c.42-1060_-1057dupTTGA, was a new low prevalent polymorphism (MAF: 0.01) with functional consequences on plasma antithrombin levels. The relevance of the vitamin D pathway on the regulation of SERPINC1 was confirmed in a cell model. Incubation of HepG2 with paricalcitol, a vitamin D analog, increased dose-dependently the levels of SERPINC1transcripts and antithrombin released to the conditioned medium. This study shows further evidence of the transcriptional regulation of SERPINC1 by vitamin D and first describes the functional and pathological relevance of mutations affecting VDRE of this gene. Our study opens new perspectives in the search of new genetic defects involved in antithrombin deficiency and the risk of thrombosis as well as in the design of new antithrombotic treatments.
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spelling pubmed-48032462016-03-25 Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency Toderici, Mara de la Morena-Barrio, María Eugenia Padilla, José Miñano, Antonia Antón, Ana Isabel Iniesta, Juan Antonio Herranz, María Teresa Fernández, Nuria Vicente, Vicente Corral, Javier PLoS One Research Article Antithrombin is a crucial anticoagulant serpin whose even moderate deficiency significantly increases the risk of thrombosis. Most cases with antithrombin deficiency carried genetic defects affecting exons or flanking regions of SERPINC1.We aimed to identify regulatory mutations inSERPINC1 through sequencing the promoter, intron 1 and 2 of this gene in 23 patients with antithrombin deficiency but without known genetic defects. Three cases with moderate antithrombin deficiency (63–78%) carried potential regulatory mutations. One located 200 bp before the initiation ATG and two in intron 1. These mutations disrupted two out of five potential vitamin D receptor elements (VDRE) identified in SERPINC1 with different software. One genetic defect, c.42-1060_-1057dupTTGA, was a new low prevalent polymorphism (MAF: 0.01) with functional consequences on plasma antithrombin levels. The relevance of the vitamin D pathway on the regulation of SERPINC1 was confirmed in a cell model. Incubation of HepG2 with paricalcitol, a vitamin D analog, increased dose-dependently the levels of SERPINC1transcripts and antithrombin released to the conditioned medium. This study shows further evidence of the transcriptional regulation of SERPINC1 by vitamin D and first describes the functional and pathological relevance of mutations affecting VDRE of this gene. Our study opens new perspectives in the search of new genetic defects involved in antithrombin deficiency and the risk of thrombosis as well as in the design of new antithrombotic treatments. Public Library of Science 2016-03-22 /pmc/articles/PMC4803246/ /pubmed/27003919 http://dx.doi.org/10.1371/journal.pone.0152159 Text en © 2016 Toderici 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Toderici, Mara
de la Morena-Barrio, María Eugenia
Padilla, José
Miñano, Antonia
Antón, Ana Isabel
Iniesta, Juan Antonio
Herranz, María Teresa
Fernández, Nuria
Vicente, Vicente
Corral, Javier
Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title_full Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title_fullStr Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title_full_unstemmed Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title_short Identification of Regulatory Mutations in SERPINC1 Affecting Vitamin D Response Elements Associated with Antithrombin Deficiency
title_sort identification of regulatory mutations in serpinc1 affecting vitamin d response elements associated with antithrombin deficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4803246/
https://www.ncbi.nlm.nih.gov/pubmed/27003919
http://dx.doi.org/10.1371/journal.pone.0152159
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