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Updated: Dec 14, 2025

Experimental and Imaging Techniques for Examining Fibrin Clot Structures in Normal and Diseased States
Published on: April 1, 2015
Structural Characteristics in the γ Chain Variants Associated with Fibrinogen Storage Disease Suggest the Underlying
Guven Burcu1, Emanuele Bellacchio2, Elif Sag1
1Department of Pediatric Gastroenterology Hepatology and Nutrition, Faculty of Medicine, Karadeniz Technical University, Trabzon 61000, Turkey.
Insights
A new fibrinogen gamma chain mutation, Fibrinogen Trabzon, causes hereditary hypofibrinogenemia with hepatic storage (HHHS) and liver disease. This discovery highlights early childhood presentation and expands understanding of fibrinogen mutations.
Area of Science:
- Hematology
- Genetics
- Hepatology
Background:
- Specific fibrinogen gamma chain mutations disrupt dimerization, leading to intracellular aggregation and impaired export.
- Hepatic storage of aggregated fibrinogen causes liver disease, a condition termed hereditary hypofibrinogenemia with hepatic storage (HHHS).
- Seven mutations in the fibrinogen gamma chain causing HHHS have been previously identified.
Abstract:
Particular fibrinogen γ chain mutations occurring in the γ-module induce changes that hamper γ-γ dimerization and provoke intracellular aggregation of the mutant fibrinogen, defective export and plasma deficiency. The hepatic storage predisposes to the development of liver disease. This condition has been termed hereditary hypofibrinogenemia with hepatic storage (HHHS). So far, seven of such mutations in the fibrinogen γ chain have been detected. We are reporting on an additional mutation occurring in a 3.5-year-old Turkish child undergoing a needle liver biopsy because of the concomitance of transaminase elevation of unknown origin and low plasma fibrinogen level. The liver biopsy showed an intra-hepatocytic storage of fibrinogen. The molecular analysis of the three fibrinogen genes revealed a mutation (Fibrinogen Trabzon Thr371Ile) at exon 9 of the γ chain in the child and his father, while the mother and the brother were normal. Fibrinogen Trabzon represents a new fibrinogen γ chain mutation fulfilling the criteria for HHHS. Its occurrence in a Turkish child confirms that HHHS can present in early childhood and provides relevant epidemiological information on the worldwide distribution of the fibrinogen γ chain mutations causing this disease. By analyzing fibrinogen crystal structures and calculating the folding free energy change (ΔΔG) to infer how the variants can affect the conformation and function, we propose a mechanism for the intracellular aggregation of Fibrinogen Trabzon and other γ-module mutations causing HHHS.
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