Related Experiment Video
Updated: Aug 24, 2025

Genetic Analysis of Hereditary Transthyretin Ala97Ser Related Amyloidosis
Published on: June 9, 2018
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.
Background:
Inherited AT deficiency is an autosomal-dominant thrombophilic disorder usually caused by various SERPINC1 defects associated with a high risk of recurrent venous thromboembolism. In this article, the phenotype, gene mutation, and molecular pathogenic mechanisms were determined in three pedigrees with inherited AT deficiency.
Methods:
Coagulation indices were examined on STAGO STA-R-MAX analyzer. The AT:Ag was analyzed by ELISA. All exons and flanking sequences of SERPINC1 were amplified by PCR. AT wild type and three mutant expression plasmids were constructed and then transfected into HEK293FT cells. The expression level of AT protein was analyzed by ELISA and Western blot.
Results:
The AT:A and AT:Ag of probands 1 and 3 were decreased to 49% and 52 mg/dL, 38% and 44 mg/dL, respectively. The AT:A of proband 2 was decreased to 32%. The SERPINC1 gene analysis indicated that there was a p.Ile421Thr in proband 1, a p.Leu417Gln in proband 2, and a p.Met252Thr in proband 3, respectively. The AT mRNA expression level of the three mutants was not significantly different from AT-WT by qRT-PCR. The results of ELISA and Western blot tests showed that the AT-M252T and AT-I421T mutants had a higher AT expression than the AT wild type (AT-WT), and the AT protein expression of AT-L417Q mutants had no significant difference compared with AT-WT in the cell lysate. The AT expression levels of AT-M252T and AT-I421T mutants were lower than that of AT-WT, and there was no significant difference between AT-L417Q mutant and AT-WT in the supernatant.
Conclusion:
The p.I421T and p.M252T mutations affected the secretion of AT protein leading to type I AT deficiency of probands 1 and 3. The p.Leu417Gln mutation was responsible for the impaired or ineffective activity AT protein in proband 2 and caused type II AT deficiency.
Related Concept Videos
Pedigree Analysis
Anticoagulant Drugs: Low-Molecular-Weight Heparins
Probability Laws
X-linked Traits
Incomplete Dominance
Genetic Lingo

