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Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects

von Willebrand factor (VWF) is an extremely cysteine-rich multimeric protein that is essential for maintaining normal hemostasis. The cysteine residues of VWF monomers form intra- and intermolecular disulfide bonds that regulate its structural conformation, multimer distribution, and ultimately its...

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Autores principales: Rawley, Orla, Swystun, Laura L., Brown, Christine, Nesbitt, Kate, Rand, Margaret, Hossain, Taneya, Klaassen, Robert, James, Paula D., Carcao, Manuel D., Lillicrap, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092401/
https://www.ncbi.nlm.nih.gov/pubmed/35020809
http://dx.doi.org/10.1182/bloodadvances.2021005928
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author Rawley, Orla
Swystun, Laura L.
Brown, Christine
Nesbitt, Kate
Rand, Margaret
Hossain, Taneya
Klaassen, Robert
James, Paula D.
Carcao, Manuel D.
Lillicrap, David
author_facet Rawley, Orla
Swystun, Laura L.
Brown, Christine
Nesbitt, Kate
Rand, Margaret
Hossain, Taneya
Klaassen, Robert
James, Paula D.
Carcao, Manuel D.
Lillicrap, David
author_sort Rawley, Orla
collection PubMed
description von Willebrand factor (VWF) is an extremely cysteine-rich multimeric protein that is essential for maintaining normal hemostasis. The cysteine residues of VWF monomers form intra- and intermolecular disulfide bonds that regulate its structural conformation, multimer distribution, and ultimately its hemostatic activity. In this study, we investigated and characterized the molecular and pathogenic mechanisms through which a novel cysteine variant p.(Cys1084Tyr) causes an unusual, mixed phenotype form of von Willebrand disease (VWD). Phenotypic data including bleeding scores, laboratory values, VWF multimer distribution, and desmopressin response kinetics were investigated in 5 members (2 parents and 3 daughters) of a consanguineous family. VWF synthesis and secretion were also assessed in a heterologous expression system and in a transient transgenic mouse model. Heterozygosity for p.(Cys1084Tyr) was associated with variable expressivity of qualitative VWF defects. Heterozygous individuals had reduced VWF:GPIbM (<0.40 IU/mL) and VWF:CB (<0.35 IU/mL), as well as relative reductions in high-molecular-weight multimers, consistent with type 2A VWD. In addition to these qualitative defects, homozygous individuals also displayed reduced factor VIII (FVIII):C/VWF:Ag, leading to very low FVIII levels (0.03-0.1 IU/mL) and reduced VWF:Ag (<0.40 IU/mL) and VWF:GPIbM (<0.30 IU/mL). Accelerated VWF clearance and impaired VWF secretion contributed to the fully expressed homozygous phenotype with impaired secretion arising because of disordered disulfide connectivity.
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spelling pubmed-90924012022-05-11 Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects Rawley, Orla Swystun, Laura L. Brown, Christine Nesbitt, Kate Rand, Margaret Hossain, Taneya Klaassen, Robert James, Paula D. Carcao, Manuel D. Lillicrap, David Blood Adv Thrombosis and Hemostasis von Willebrand factor (VWF) is an extremely cysteine-rich multimeric protein that is essential for maintaining normal hemostasis. The cysteine residues of VWF monomers form intra- and intermolecular disulfide bonds that regulate its structural conformation, multimer distribution, and ultimately its hemostatic activity. In this study, we investigated and characterized the molecular and pathogenic mechanisms through which a novel cysteine variant p.(Cys1084Tyr) causes an unusual, mixed phenotype form of von Willebrand disease (VWD). Phenotypic data including bleeding scores, laboratory values, VWF multimer distribution, and desmopressin response kinetics were investigated in 5 members (2 parents and 3 daughters) of a consanguineous family. VWF synthesis and secretion were also assessed in a heterologous expression system and in a transient transgenic mouse model. Heterozygosity for p.(Cys1084Tyr) was associated with variable expressivity of qualitative VWF defects. Heterozygous individuals had reduced VWF:GPIbM (<0.40 IU/mL) and VWF:CB (<0.35 IU/mL), as well as relative reductions in high-molecular-weight multimers, consistent with type 2A VWD. In addition to these qualitative defects, homozygous individuals also displayed reduced factor VIII (FVIII):C/VWF:Ag, leading to very low FVIII levels (0.03-0.1 IU/mL) and reduced VWF:Ag (<0.40 IU/mL) and VWF:GPIbM (<0.30 IU/mL). Accelerated VWF clearance and impaired VWF secretion contributed to the fully expressed homozygous phenotype with impaired secretion arising because of disordered disulfide connectivity. American Society of Hematology 2022-05-09 /pmc/articles/PMC9092401/ /pubmed/35020809 http://dx.doi.org/10.1182/bloodadvances.2021005928 Text en © 2022 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved.
spellingShingle Thrombosis and Hemostasis
Rawley, Orla
Swystun, Laura L.
Brown, Christine
Nesbitt, Kate
Rand, Margaret
Hossain, Taneya
Klaassen, Robert
James, Paula D.
Carcao, Manuel D.
Lillicrap, David
Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title_full Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title_fullStr Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title_full_unstemmed Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title_short Novel cysteine substitution p.(Cys1084Tyr) causes variable expressivity of qualitative and quantitative VWF defects
title_sort novel cysteine substitution p.(cys1084tyr) causes variable expressivity of qualitative and quantitative vwf defects
topic Thrombosis and Hemostasis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092401/
https://www.ncbi.nlm.nih.gov/pubmed/35020809
http://dx.doi.org/10.1182/bloodadvances.2021005928
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