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July 28, 2026Biomolecules0 citationsOpen Access

Functional Characterization of the VWF p.Cys2163Tyr Variant Reveals Impaired Secretion and Intracellular Processing

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YZYu ZhangYZYu ZhangAYAizhen Yang

Key Points

  • The study aims to elucidate the functional impact of the p.Cys2163Tyr variant on VWF secretion and multimer formation in Von Willebrand disease.
  • Clinical evaluation and genetic analysis were performed in a patient and family members.
  • In vitro expression assays assessed the secretion and multimer formation of the VWF variant.
  • Laboratory testing included VWF:Ag, VWF:GPIbR, and FVIII:C levels.
  • VWF:Ag levels in the proband were 6.8 IU/dL, and VWF:GPIbR levels were 0.1 IU/dL, indicating severe VWD.
  • Plasma analysis showed almost complete absence of high-molecular-weight VWF multimers.
  • Heterozygous variant c.6488G>A identified in asymptomatic family members, suggesting incomplete segregation with disease severity.

Abstract

Von Willebrand disease (VWD) is the most common inherited bleeding disorder, yet the contribution of specific VWF domains to its pathogenesis remains incompletely understood. In particular, the role of the D4 domain in VWF secretion, intracellular maturation, and multimer formation has not been fully elucidated. Here, we investigated the functional impact of a heterozygous p.Cys2163Tyr variant located in the D4 domain, identified in a patient with a severe bleeding phenotype, using clinical evaluation, genetic analysis, family studies, and in vitro expression assays. Laboratory testing revealed markedly reduced VWF:Ag (6.8 IU/dL), VWF:GPIbR (0.1 IU/dL), and FVIII:C levels, indicating a severe VWD phenotype in the proband. Plasma VWF multimer analysis showed a markedly reduced overall VWF signal with an almost complete absence of high-molecular-weight multimers, supporting classification of the phenotype as severe type 2A VWD. The heterozygous c.6488G>A (p.Cys2163Tyr) variant was also present in asymptomatic family members, indicating incomplete segregation with the severe phenotype and suggesting that this variant alone is insufficient to explain the proband’s disease severity. Notably, the proband’s mother exhibited mildly reduced VWF levels in the absence of this variant, suggesting the possible contribution of an additional unidentified defect or modifier affecting the maternal allele. In vitro expression demonstrated preserved intracellular VWF antigen, markedly reduced secretion of mutant VWF, and loss of high-molecular-weight VWF multimers. Together, these findings indicate that VWF p.Cys2163Tyr is a functionally deleterious variant that markedly impairs VWF secretion and high-molecular-weight multimer formation in vitro. However, the incomplete segregation observed in the family suggests that this heterozygous variant alone may not fully account for the proband’s severe type 2A VWD phenotype.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a6851062845b684d16f030bhttps://doi.org/10.3390/biom16081088
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