Literature DB >> 23446343

C2362F mutation gives rise to an ADAMTS13-resistant von Willebrand factor.

Alessandra Casonato1, Elena Pontara, Monica Battiston, Margherita Morpurgo, Maria Grazia Cattini, Elisabetta Casarin, Giorgia Saga, Viviana Daidone, Luigi De Marco.   

Abstract

von Willebrand factor (VWF) multimers result from proteolysis by the metalloprotease ADAMTS13. Since C2362F-VWF features abnormally large multimers with their triplet oligomer structure replaced by a diffuse smear, we explored the susceptibility of C2362F-VWF to ADAMTS13. VWF-enriched blood samples, obtained by cryoethanol precipitation of plasma from a patient with von Willebrand disease (VWD) homozygous for the C2362F mutation and a normal subject, were submitted to cleavage by recombinant ADAMTS13 under static conditions in the presence of urea. C2362F-VWF proved completely ADAMTS13-resistant in vitro. At any concentration of recombinant ADAMTS13 (from 0.1 µM to 1 µM), there was no evidence of the abnormally large VWF multimers of C2362F-VWF disappearing, nor any increased representation of triplet multimer bands, unlike the situation seen in normal VWF. This is due partly to a defective ADAMTS13 binding to C2362F-VWF under static conditions, as seen in both the patient's and recombinant mutated VWF proteins. These findings were associated with a significantly shorter than normal survival of C2362F-VWF after DDAVP, demonstrating that proteolysis and VWF survival may be independent phenomena. Our findings clearly demonstrate that the loss of cysteine 2362 makes VWF resistant to proteolysis by ADAMTS13, at least partly due to an impaired ADAMTS13 binding to VWF. This suggests that the B2 domain of VWF is involved in modulating ADAMTS13 binding to VWF and the consequent proteolytic process. The C2362F-VWF mutation also enables a new abnormality to be identified in the VWF-ADAMTS13 relationship, i.e. an ADAMTS13-resistant VWF.

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Year:  2013        PMID: 23446343     DOI: 10.1160/TH12-11-0808

Source DB:  PubMed          Journal:  Thromb Haemost        ISSN: 0340-6245            Impact factor:   5.249


  3 in total

1.  Cryptic non-canonical splice site activation is part of the mechanism that abolishes multimer organization in the c.2269_2270del von Willebrand factor.

Authors:  Viviana Daidone; Eva Galletta; Luigi De Marco; Alessandra Casonato
Journal:  Haematologica       Date:  2019-07-18       Impact factor: 9.941

2.  A New ELISA Using the ANANAS Technology Showing High Sensitivity to diagnose the Bovine Rhinotracheitis from Individual Sera to Pooled Milk.

Authors:  Elisabetta Casarin; Laura Lucchese; Santina Grazioli; Sonia Facchin; Nicola Realdon; Emiliana Brocchi; Margherita Morpurgo; Stefano Nardelli
Journal:  PLoS One       Date:  2016-01-13       Impact factor: 3.240

3.  Von Willebrand Factor Multimer Densitometric Analysis: Validation of the Clinical Accuracy and Clinical Implications in Von Willebrand Disease.

Authors:  Johan Boender; Ferdows Atiq; Marjon H Cnossen; Johanna G van der Bom; Karin Fijnvandraat; Joke de Meris; Moniek P M de Maat; Karin P M van Galen; Britta A P Laros-van Gorkom; Karina Meijer; Jeroen Eikenboom; Frank W G Leebeek
Journal:  Hemasphere       Date:  2021-02-17
  3 in total

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