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Published on: June 9, 2018
[Analysis of an hereditary protein C deficiency pedigree with compound heterozygous gene mutations]
Li-hong Yang1, Li-qing Zhu, Xia-oli Yang
1Wenzhou Medical College, Wenzhou, Zhejiang, People's Republic of China.
Insights
This study identified two new PROC gene mutations, g.6128 T to G and g.8478 G to C, in a family with hereditary protein C deficiency. These compound heterozygous mutations cause severe protein C deficiency.
Area of Science:
- Genetics
- Molecular Biology
- Hematology
Context:
- Hereditary protein C deficiency is a rare genetic disorder impacting blood coagulation.
- Understanding the molecular basis of this deficiency is crucial for diagnosis and management.
Purpose:
- To analyze genetic mutations and explore the molecular pathogenesis of hereditary protein C deficiency in a multigenerational family.
- To identify specific PROC gene mutations responsible for the observed deficiency.
Summary:
- Genetic analysis of a 15-member, 4-generation pedigree revealed a compound heterozygous missense mutation in the protein C gene (PROC).
- The proband presented with significantly reduced protein C activity and antigen levels, carrying mutations g.6128 T to G (exon 7) and g.8478 G to C (exon 9).
- These mutations, inherited from both parents, were linked to decreased protein C levels in affected family members.
Impact:
- Identifies novel PROC gene mutations contributing to hereditary protein C deficiency.
- Provides insights into the molecular pathogenesis of protein C deficiency.
- Facilitates genetic counseling and potential therapeutic strategies for affected families.
Objective:
To analyze genetic mutations and explore its molecular pathogenesis for an hereditary protein C (PC) deficiency pedigree.
Methods:
The pedigree has included 15 individuals from 4 generations. Plasma levels of PC activity (PC:A), PC antigen (PC:Ag) and other coagulant parameters were determined for members of the family. The 9 exons and intron-exon boundaries of protein C gene (PROC) of the proband were amplified with PCR and analyzed with direct sequencing. Detected mutations were confirmed with reverse sequencing. Corresponding PCR fragments from the family members were also directly sequenced.
Results:
Plasma PC:A and PC:Ag for the proband was 26% and 18.60%, respectively, both being lower than normal references. Seven members from the pedigree also had lower PC:A, six had lower PC:Ag. A compound heterozygous missense mutation, including a T to G transition at position 6128 of exon 7, which results in Phe139Val, and a G to C transition at position 8478 in exon 9, which results in Asp255His, were identified in the proband. The paternal grandma, father and two aunts were heterozygous for g.6128 T to G, whilst the mother, the second uncle, sister and son were heterozygous for g.8478 G to C. There were lower PC:A in family members with g.8478 G to C.
Conclusion:
The proband had inherited two independent mutations of the PROC gene including g.6128 T to G in exon 7 and g.8478 G to C in exon 9 from her father and mother, respectively. The resulting compound heterozygous mutation has caused a serious hereditary protein C deficiency.
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