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Published on: June 15, 2011
Identification of two novel mutations in three children with congenital factor VII deficiency
Kairong Liang1, Lauriane Nikuze1, Fuyong Zhang2
1Department of Pediatrics.
Insights
Congenital factor VII deficiency (FVIID) is a rare bleeding disorder. This study identified novel F7 gene mutations in three Chinese patients, revealing impaired protein folding and function, leading to FVIID.
Area of Science:
- Genetics
- Hematology
- Molecular Biology
Background:
- Congenital factor VII deficiency (FVIID) is a rare autosomal recessive bleeding disorder caused by F7 gene mutations.
- Accurate diagnosis and understanding genotype-phenotype correlations are crucial for managing FVIID.
Observation:
- Three Chinese patients with FVIID (FVII:C < 2%) were analyzed for genetic defects.
- Patient 1: compound heterozygous F7 Cys389Gly/Cys115Arg; Patient 2: compound heterozygous F7 Thr241Asn/Pro324Leu; Patient 3: compound heterozygous F7 Thr241Asn/IVS5-2A>G.
Findings:
- Two novel F7 mutations, Cys115Arg and Pro324Leu, were identified.
- Molecular modeling indicated these novel mutations impair epidermal growth factor 1 domain folding and FVII procoagulant function.
- These defects lead to congenital factor VII deficiency.
Implications:
- This research expands the known spectrum of F7 mutations associated with FVIID.
- Understanding novel mutations aids in accurate genetic diagnosis and potential therapeutic strategies for FVIID patients.
- The findings contribute to the molecular understanding of factor VII function and deficiency.
Abstract:
Congenital factor VII deficiency (FVIID) is a rare F7 gene mutation causing bleeding disorder inherited in an autosomal recessive manner. In this study, we aimed to identify genetic defects and analyze their relationships with phenotype in three Chinese FVIID patients. The diagnosis of FVIID was made based on FVII coagulant activity (FVII:C) levels assessed through prothrombin time assay. Direct sequencing and protein modeling were performed to detect genetic mutations and the resulting protein expression. Patient 1, a 2-year-old girl, presented with mild bleeding and was found to have a FVII:C of 0.2% and a compound heterozygous F7 Cys389Gly/Cys115Arg mutation. Patient 2, a 7-year-old boy, consulted for moderate bleeding and was found to have a FVII:C of 0.8% and a compound heterozygous F7 Thr241Asn/Pro324Leu mutation. Patient 3, a 5-year-old boy who developed a mild bleeding after trauma was found to have a FVII:C of 1.8% and a compound heterozygous F7 Thr241Asn/ IVS5-2A>G mutation. We hereby report three congenital FVIID patients with FVII:C less than 2% and their respective F7 mutations, two of which (F7 Cys115Arg, Pro324Leu) are novel. The molecular model analysis of the two novel mutations F7 Cys115Arg and Pro324Leu respectively indicated impairment of the proper folding of epidermal growth factor 1 domain situated on F7 gene and impairment of the procoagulant function of FVII both leading to the congenital deficiency of FVII.
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