Defects in type IIA von Willebrand disease: a cysteine 509 to arginine substitution in the mature von Willebrand factor disrupts a disulphide loop involved in the interaction with platelet glycoprotein Ib‐IX
- 1 September 1992
- journal article
- Published by Wiley in British Journal of Haematology
- Vol. 82 (1) , 66-72
- https://doi.org/10.1111/j.1365-2141.1992.tb04595.x
Abstract
Type IIA von Willebrand disease (vWD) is characterized by the loss of high and intermediate weight multimers of von Willebrand factor (vWF) from plasma. The 3' end of exon 28 in the vWF gene from four type IIA vWD patients was amplified by the polymerase chain reaction, cloned and sequenced. Sequencing identified two potential missense mutations resulting in the amino acid substitutions Arg 834-->Gln and Glu 875-->Lys in the mature vWF subunit within an area of vWF where mutations in type IIA vWD have been reported. Neither of these amino acid substitutions was found in over 100 normal alleles tested by allele specific oligonucleotide hybridization. A polymorphism (Val 802-->Leu) was identified in another patient. Other areas of exon 28 were analysed by denaturing gradient gel electrophoresis (DGGE) and DNA from one patient demonstrated an irregular DGGE pattern on the 5' end of the exon. Sequencing demonstrated an amino acid substitution of an arginine for cysteine at position 509 adjacent to an area of vWF where defects associated with type IIB vWD have been found. This substitution was not found in 100 normal chromosomes tested by restriction enzyme digestion. The Cys 509-->Arg substitution eliminates an intramolecular disulphide bridge formed by Cys 509 and Cys 695 which is important to maintain the configuration of vWF functional domains that interact with platelet glycoprotein Ib-IX.Keywords
This publication has 25 references indexed in Scilit:
- Human von Willebrand factor gene and pseudogene: structural analysis and differentiation by polymerase chain reactionBiochemistry, 1991
- Distinct abnormalities in the interaction of purified types IIA and IIB von Willebrand factor with the two platelet binding sites, glycoprotein complexes Ib-IX and IIb-IIIa.Journal of Clinical Investigation, 1990
- Cross-linking of a monomeric 39/34-kDa dispase fragment of von Willebrand factor (Leu-480/Val-481-Gly-718) to the N-terminal region of the .alpha.-chain of membrane glycoprotein Ib on intact platelets with bis(sulfosuccinimidyl) suberateBiochemistry, 1989
- Mutations in the catalytic domain of human coagulation factor IX: Rapid characterization by direct genomic sequencing of DNA fragments displaying an altered melting behaviorGenomics, 1989
- Primer-Directed Enzymatic Amplification of DNA with a Thermostable DNA PolymeraseScience, 1988
- Epitope mapping of the von Willebrand factor subunit distinguishes fragments present in normal and type IIA von Willebrand disease from those generated by plasmin.Journal of Clinical Investigation, 1987
- Subunit composition of plasma von Willebrand factor. Cleavage is present in normal individuals, increased in IIA and IIB von Willebrand disease, but minimal in variants with aberrant structure of individual oligomers (types IIC, IID, and IIE).Journal of Clinical Investigation, 1986
- Platelet von Willebrand factor: Comparison with plasma von Willebrand factorThrombosis Research, 1985
- Variant von Willebrand's DiseaseJournal of Clinical Investigation, 1980
- Heightened Interaction between Platelets and Factor VIII/von Willebrand Factor in a New Subtype of von Willebrand's DiseaseNew England Journal of Medicine, 1980