Cargando…

Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder

Congenital fibrinogen disorders are caused by mutations in genes coding for fibrinogen and may lead to various clinical phenotypes. Here, we present a functional and structural analysis of 4 novel variants located in the FGB gene coding for fibrinogen Bβ chain-heterozygous missense BβY416C and BβA68...

Descripción completa

Detalles Bibliográficos
Autores principales: Ceznerová, Eliška, Kaufmanová, Jiřina, Sovová, Žofie, Štikarová, Jana, Loužil, Jan, Kotlín, Roman, Suttnar, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8775743/
https://www.ncbi.nlm.nih.gov/pubmed/35054908
http://dx.doi.org/10.3390/ijms23020721
_version_ 1784636661387231232
author Ceznerová, Eliška
Kaufmanová, Jiřina
Sovová, Žofie
Štikarová, Jana
Loužil, Jan
Kotlín, Roman
Suttnar, Jiří
author_facet Ceznerová, Eliška
Kaufmanová, Jiřina
Sovová, Žofie
Štikarová, Jana
Loužil, Jan
Kotlín, Roman
Suttnar, Jiří
author_sort Ceznerová, Eliška
collection PubMed
description Congenital fibrinogen disorders are caused by mutations in genes coding for fibrinogen and may lead to various clinical phenotypes. Here, we present a functional and structural analysis of 4 novel variants located in the FGB gene coding for fibrinogen Bβ chain-heterozygous missense BβY416C and BβA68S, homozygous nonsense BβY345*, and heterozygous nonsense BβW403* mutations. The cases were identified by coagulation screening tests and further investigated by various methods. Fibrin polymerization had abnormal development with decreased maximal absorbance in all patients. Plasmin-induced fibrin degradation revealed different lytic phases of BβY416C and BβW403* than those of the control. Fibrinopeptide cleavage measured by reverse phase high pressure liquid chromatography of BβA68S showed impaired release of fibrinopeptide B. Morphological properties, studied through scanning electron microscopy, differed significantly in the fiber thickness of BβY416C, BβA68S, and BβW403*, and in the fiber density of BβY416C and BβW403*. Finally, homology modeling of BβA68S showed that mutation caused negligible alternations in the protein structure. In conclusion, all mutations altered the correct fibrinogen function or structure that led to congenital fibrinogen disorders.
format Online
Article
Text
id pubmed-8775743
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87757432022-01-21 Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder Ceznerová, Eliška Kaufmanová, Jiřina Sovová, Žofie Štikarová, Jana Loužil, Jan Kotlín, Roman Suttnar, Jiří Int J Mol Sci Article Congenital fibrinogen disorders are caused by mutations in genes coding for fibrinogen and may lead to various clinical phenotypes. Here, we present a functional and structural analysis of 4 novel variants located in the FGB gene coding for fibrinogen Bβ chain-heterozygous missense BβY416C and BβA68S, homozygous nonsense BβY345*, and heterozygous nonsense BβW403* mutations. The cases were identified by coagulation screening tests and further investigated by various methods. Fibrin polymerization had abnormal development with decreased maximal absorbance in all patients. Plasmin-induced fibrin degradation revealed different lytic phases of BβY416C and BβW403* than those of the control. Fibrinopeptide cleavage measured by reverse phase high pressure liquid chromatography of BβA68S showed impaired release of fibrinopeptide B. Morphological properties, studied through scanning electron microscopy, differed significantly in the fiber thickness of BβY416C, BβA68S, and BβW403*, and in the fiber density of BβY416C and BβW403*. Finally, homology modeling of BβA68S showed that mutation caused negligible alternations in the protein structure. In conclusion, all mutations altered the correct fibrinogen function or structure that led to congenital fibrinogen disorders. MDPI 2022-01-10 /pmc/articles/PMC8775743/ /pubmed/35054908 http://dx.doi.org/10.3390/ijms23020721 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ceznerová, Eliška
Kaufmanová, Jiřina
Sovová, Žofie
Štikarová, Jana
Loužil, Jan
Kotlín, Roman
Suttnar, Jiří
Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title_full Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title_fullStr Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title_full_unstemmed Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title_short Structural and Functional Characterization of Four Novel Fibrinogen Mutations in FGB Causing Congenital Fibrinogen Disorder
title_sort structural and functional characterization of four novel fibrinogen mutations in fgb causing congenital fibrinogen disorder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8775743/
https://www.ncbi.nlm.nih.gov/pubmed/35054908
http://dx.doi.org/10.3390/ijms23020721
work_keys_str_mv AT ceznerovaeliska structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT kaufmanovajirina structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT sovovazofie structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT stikarovajana structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT louziljan structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT kotlinroman structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder
AT suttnarjiri structuralandfunctionalcharacterizationoffournovelfibrinogenmutationsinfgbcausingcongenitalfibrinogendisorder