Compound heterozygosity of novel missense mutations in the gamma-glutamyl-carboxylase gene causes hereditary combined vitamin K–dependent coagulation factor deficiency
Open Access
- 15 September 2006
- journal article
- case report
- Published by American Society of Hematology in Blood
- Vol. 108 (6) , 1925-1931
- https://doi.org/10.1182/blood-2005-12-010660
Abstract
Hereditary combined vitamin K–dependent (VKD) coagulation factor deficiency is an autosomal recessive bleeding disorder associated with defects in either the γ-carboxylase, which carboxylates VKD proteins to render them active, or the vitamin K epoxide reductase (VKORC1), which supplies the reduced vitamin K cofactor required for carboxylation. Such deficiencies are rare, and we report the fourth case resulting from mutations in the carboxylase gene, identified in a Tunisian girl who exhibited impaired function in hemostatic VKD factors that was not restored by vitamin K administration. Sequence analysis of the proposita did not identify any mutations in the VKORC1 gene but, remarkably, revealed 3 heterozygous mutations in the carboxylase gene that caused the substitutions Asp31Asn, Trp157Arg, and Thr591Lys. None of these mutations have previously been reported. Family analysis showed that Asp31Asn and Thr591Lys were coallelic and maternally transmitted while Trp157Arg was transmitted by the father, and a genomic screen of 100 healthy individuals ruled out frequent polymorphisms. Mutational analysis indicated wild-type activity for the Asp31Asn carboxylase. In contrast, the respective Trp157Arg and Thr591Lys activities were 8% and 0% that of wild-type carboxylase, and their compound heterozygosity can therefore account for functional VKD factor deficiency. The implications for carboxylase mechanism are discussed.Keywords
This publication has 68 references indexed in Scilit:
- r-VKORC1 Expression in Factor IX BHK Cells Increases the Extent of Factor IX Carboxylation but Is Limited by Saturation of Another Carboxylation Component or by a Shift in the Rate-Limiting StepBiochemistry, 2006
- The physiology of vitamin K nutriture and vitamin K‐dependent protein function in atherosclerosisJournal of Thrombosis and Haemostasis, 2004
- Compound heterozygous mutations in the γ‐glutamyl carboxylase gene cause combined deficiency of all vitamin K‐dependent blood coagulation factorsBritish Journal of Haematology, 2004
- Structural commonalities among integral membrane enzymesFEBS Letters, 2004
- Identification of Sequences within the γ-Carboxylase That Represent a Novel Contact Site with Vitamin K-dependent Proteins and That Are Required for ActivityPublished by Elsevier ,2001
- On a Potential Global Role for Vitamin K-dependent γ-Carboxylation in Animal SystemsJournal of Biological Chemistry, 2001
- Chromosomal localization of the γ-glutamyl carboxylase gene at 2p12Genomics, 1995
- Localization of the Factor IX Propeptide Binding Site on Recombinant Vitamin K Dependent Carboxylase Using Benzoylphenylalanine Photoaffinity Peptide InactivatorsBiochemistry, 1995
- Hereditary deficiency of all vitamin K-dependent procoagulants and anticoagulantsBritish Journal of Haematology, 1990
- Studies on a family with combined functional deficiencies of vitamin K-dependent coagulation factors.Journal of Clinical Investigation, 1982