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Updated: Oct 1, 2025

Genetic Analysis of Hereditary Transthyretin Ala97Ser Related Amyloidosis
Published on: June 9, 2018
[Clinical manifestations and gene analysis of 18 cases of hereditary protein S deficiency]
1State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Institute of Hematology & Blood Diseases Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin 300020, China.
Insights
Inherited protein S deficiency in 18 patients revealed new PROS1 gene mutations. These genetic discoveries expand understanding of the molecular basis for this thrombotic disorder.
Area of Science:
- Hematology
- Molecular Genetics
- Thrombosis Research
Background:
- Inherited protein S (PS) deficiency is a genetic condition increasing the risk of blood clots.
- Understanding the molecular basis of PS deficiency is crucial for diagnosis and management.
Purpose of the Study:
- To investigate the clinical features and molecular causes of inherited protein S deficiency in 18 patients.
- To identify novel mutations in the PROS1 gene associated with PS deficiency.
Main Methods:
- Phenotypic diagnosis through measurement of protein C (PC), antithrombin (AT), and PS activity.
- High-throughput sequencing (HTS) for screening coagulation disease-related genes.
- Sanger sequencing and Swiss-model for variant confirmation and structural analysis.
Main Results:
- Sixteen patients presented with deep vein thrombosis (DVT), including other thrombotic events like mesenteric and cerebral vein thrombosis.
- Sixteen novel PROS1 gene mutations were identified, including nonsense, frameshift, and large fragment deletions.
- One patient with DVT during pregnancy carried a PROC gene mutation.
Conclusions:
- Newly identified PROS1 gene mutations expand the known mutation spectrum for inherited protein S deficiency.
- This research enhances the understanding of the molecular pathogenesis of PS deficiency and associated thrombophilia.
Abstract:
Objective: To analyze the clinical manifestations and molecular pathogenesis of 18 patients with inherited protein S (PS) deficiency. Methods: Eighteen patients with inherited PS deficiency who were admitted to the Institute of Hematology & Blood Diseases Hospital from June 2016 to February 2019 were analyzed: activity of protein C (PC) and antithrombin (AT) , PS activity were measured for phenotype diagnosis; high throughput sequencing (HTS) was used for screening of coagulation disease-related genes; Sanger sequencing was used to confirm candidate variants; Swiss-model was used for three-dimensional structure analysis. Results: The PS:C of 18 patients ranged from 12.5 to 48.2 U/dL. Among them, 16 cases developed deep vein thrombosis, including 2 cases each with mesenteric vein thrombosis and cerebral infarction, and 1 case each with pulmonary embolism and deep vein thrombosis during pregnancy. A total of 16 PROS1 gene mutations were detected, and 5 nonsense mutations (c.134_162del/p.Leu45*, c.847G>T/p.Glu283*, c.995_996delAT/p.Tyr332*, c.1359G> A/p.Trp453*, c.1474C>T/p.Gln492*) , 2 frameshift mutations (c.1460delG/p.Gla487Valfs*9 and c.1747_1750delAATC/p.Asn583Wfs*9) and 1 large fragment deletion (exon9 deletion) were reported for the first time. In addition, the PS:C of the deep vein thrombosis during pregnancy case was 55.2 U/dL carrying PROC gene c.565C>T/p.Arg189Trp mutation. Conclusion: The newly discovered gene mutations enriched the PROS1 gene mutation spectrum which associated with inherited PS deficiency.
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