scholarly journals von Willebrand factor propeptide missense variants affect anterograde transport to Golgi resulting in ER retention

2021 ◽  
Author(s):  
Hamideh Yadegari ◽  
Arijit Biswas ◽  
Shariq Ahmed ◽  
Arshi Naz ◽  
Johannes Oldenburg
Blood ◽  
2002 ◽  
Vol 100 (5) ◽  
pp. 1699-1706 ◽  
Author(s):  
Jonathan B. Rosenberg ◽  
Sandra L. Haberichter ◽  
Mary A. Jozwiak ◽  
Elizabeth A. Vokac ◽  
Philip A. Kroner ◽  
...  

While studying patient plasma containing an unusual pattern of von Willebrand factor (VWF) multimers, we discovered a previously unreported phenomenon: heavy predominance of dimeric VWF. Genomic analysis revealed a new congenital mutation (Tyr87Ser) that altered the final stages of VWF biosynthesis. This mutation in the propeptide (VWFpp) resulted in synthesis of dimeric VWF with an almost complete loss of N-terminal multimerization. The multimer pattern in patient plasma appears to result from separate alleles' synthesizing wild-type or mutant (dimeric) VWF, with homodimers composing the predominant protomeric species. We have expressed VWF protein containing the Tyr87Ser mutation and analyzed the intracellular processing and resulting VWF biological functions. The expressed dimeric VWF displayed a loss of several specific functions: collagen binding, factor VIII binding, and ristocetin-induced platelet binding. However, granular storage of dimeric VWF was normal, demonstrating that the lack of multimerization does not preclude granular storage. Although the tertiary structure of the VWFpp remains unknown, the mutant amino acid is located in a region that is highly conserved across several species and may play a major role in the multimerization of VWF. Our data suggest that one function of the highly cysteine-rich VWFpp is to align the adjacent subunits of VWF into the correct configuration, serving as an intramolecular chaperone. The integrity of the VWFpp is essential to maintain the proper spacing and alignment of the multiple cysteines in the VWFpp and N-terminus of the mature VWF.


Blood ◽  
2015 ◽  
Vol 126 (15) ◽  
pp. 1753-1761 ◽  
Author(s):  
Sandra L. Haberichter

Abstract von Willebrand factor (VWF) is a large multimeric glycoprotein that mediates the attachment of platelets to damaged endothelium and also serves as the carrier protein for coagulation factor VIII (FVIII), protecting it from proteolytic degradation. Quantitative or qualitative defects in VWF result in von Willebrand disease (VWD), a common inherited bleeding disorder. VWF is synthesized with a very large propeptide (VWFpp) that is critical for intracellular processing of VWF. VWFpp actively participates in the process of VWF multimerization and is essential for trafficking of VWF to the regulated storage pathway. Mutations identified within VWFpp in VWD patients are associated with altered VWF structure and function. The assay of plasma VWFpp has clinical utility in assessing acute and chronic vascular perturbation associated with diseases such as thrombotic thrombocytopenic purpura, sepsis, and diabetes among others. VWFpp assay also has clear utility in the diagnosis of VWD subtypes, particularly in discriminating true type 3 subjects from type 1C (reduced plasma survival of VWF), which is clinically important and has implications for therapeutic treatment.


Author(s):  
R Maleka ◽  
M Meiring

Background: Von Willebrand disease (VWD) is the most common inherited bleeding disorder caused by a deficiency or defect in von Willebrand factor (VWF). Quantitative defects include, type 1 VWD and type 3 VWD. Type 1 VWD is either due to decreased synthesis and secretion, or increased clearance of VWF. It is essential to diagnose individuals with increased VWF clearance, as treatment of these patients with 1-deamino-8-D-arginine vasopressin is not effective. Currently, there is one commercial assay that measures von Willebrand factor propeptide (VWFpp) levels. This assay is time consuming to perform. With this research we developed and verified a rapid assay to determine VWFpp levels in patient plasma. Methods: The commercial VWF mouse anti-human VWF propeptide matched antibody pair (clones CLB-Pro 35 and CLB-Pro 14.3) was used in enzyme-linked immunosorbent assays of the commercial and the rapid method. While the CLB-Pro commercial assay uses two-hour incubations, our rapid assay uses 30 minute incubations. We compared our assay to the CLB-Pro commercial assay using twenty type 1 VWD patient plasma. Two samples, the World Health Organization (WHO) 6th International Standard (IS) for factor VIII (FVIII)/VWF and a type 1 VWD patient with increased clearance were also tested four times in duplicate for five consecutive days to determine the inter- and intra-assay precision. Results: Our rapid assay showed equal sensitivity to the CLB-Pro commercial assay by detecting 1.5625% VWFpp. The intra- and interassay CVs of our assay were acceptable according to the Food and Drug Administration guideline of 2018. Conclusion: This rapid enzyme-linked immunosorbent assay (ELISA) is as sensitive and precise as the CLB-Pro commercial assay. Therefore, it can be used to rapidly diagnose patients with increased VWF clearance.


Blood ◽  
2014 ◽  
Vol 124 (5) ◽  
pp. e1-e3 ◽  
Author(s):  
Adrienne Lee ◽  
Gary Sinclair ◽  
Karen Valentine ◽  
Paula James ◽  
Man-Chiu Poon

Key Points Remission status in relapsing-remitting AVWS depends on the balance of VWF clearance by anti-VWF antibody and VWF secretion. VWFpp:Ag ratio is a simple assay that provides information on this balance and predicts remission status in this case of AVWS.


Sign in / Sign up

Export Citation Format

Share Document