Analysis of phenotype and gene mutation in three pedigrees with inherited antithrombin deficiency

Min Li1, Shuting Jiang2, Siqi Liu2

  • 1School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou, China.

Insights

Inherited antithrombin (AT) deficiency, a thrombophilic disorder, was studied in three families. Specific SERPINC1 gene mutations were identified, impacting AT protein secretion and activity, leading to different types of AT deficiency.

Area of Science:

  • Genetics and Molecular Biology
  • Hematology
  • Thrombosis Research

Background:

  • Inherited antithrombin (AT) deficiency is an autosomal-dominant thrombophilic disorder.
  • It is typically caused by SERPINC1 gene defects, increasing the risk of venous thromboembolism.
  • Understanding genotype-phenotype correlations is crucial for risk assessment.

Purpose of the Study:

  • To investigate the phenotype, gene mutations, and molecular mechanisms in three pedigrees with inherited AT deficiency.
  • To characterize the impact of identified SERPINC1 mutations on AT protein function and secretion.

Main Methods:

  • Coagulation indices were measured using a STAGO STA-R-MAX analyzer.
  • Antigenic AT (AT:Ag) levels were determined by ELISA.
  • SERPINC1 gene sequencing, expression plasmid construction, cell transfection (HEK293FT), and protein analysis (ELISA, Western blot, qRT-PCR) were performed.

Main Results:

  • Probands 1 and 3 showed decreased AT activity and antigen levels, with identified SERPINC1 mutations p.Ile421Thr and p.Met252Thr.
  • Proband 2 exhibited reduced AT activity (32%) with the p.Leu417Gln mutation.
  • Mutations p.I421T and p.M252T impaired AT protein secretion, while p.Leu417Gln resulted in impaired AT protein activity.

Conclusions:

  • The p.I421T and p.M252T mutations in SERPINC1 cause Type I AT deficiency by affecting AT protein secretion.
  • The p.Leu417Gln mutation leads to Type II AT deficiency due to impaired or ineffective AT protein activity.
  • These findings elucidate the molecular basis of AT deficiency in the studied pedigrees.
Abstract

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