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Updated: Aug 31, 2025

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Published on: June 29, 2015
A gain-of-function filamin A mutation in mouse platelets induces thrombus instability
Frédéric Adam1, Alexandre Kauskot1, Lamia Lamrani1
1INSERM UMR_S 1176, HITh, Université Paris-Saclay, Le Kremlin Bicêtre, France.
Background:
Filaminopathies A are rare disorders affecting the brain, intestine, or skeleton, characterized by dominant X-linked filamin A (FLNA) gene mutations. Macrothrombocytopenia with functionally defective platelets is frequent. We have described a filaminopathy A male patient, exhibiting a C-terminal frame-shift FLNa mutation (Berrou et al., Arterioscler Thromb Vasc Biol. 2017;37:1087-1097). Contrasting with female patients, this male patient exhibited gain of platelet functions, including increased platelet aggregation, integrin αIIbβ3 activation, and secretion at low agonist concentration, raising the issue of thrombosis risk.
Objectives:
Our goal is to assess the thrombotic potential of the patient FLNa mutation in an in vivo model.
Methods:
We have established a mutant FlnA knock-in mouse model.
Results:
The mutant FlnA mouse platelets phenocopied patient platelets, showing normal platelet count, lower expression level of mutant FlnA, and gain of platelet functions: increased platelet aggregation, secretion, and αIIbβ3 activation, as well as increased spreading and clot retraction. Surprisingly, mutant FlnA mice exhibited a normal bleeding time, but with increased re-bleeding (77%) compared to wild type (WT) FlnA mice (27%), reflecting hemostatic plug instability. Again, in an in vivo thrombosis model, the occlusion time was not altered by the FlnA mutation, but arteriolar embolies were increased (7-fold more frequent in mutant FlnA mice versus WT mice), confirming thrombus instability.
Conclusions:
This study shows that the FlnA mutation found in the male patient induced gain of platelet functions in vitro, but thrombus instability in vivo. Implications for the role of FLNa in physiology of thrombus formation are discussed.
Insights
A filamin A (FLNA) mutation in males causes hyperactive platelets but leads to unstable blood clots. This research highlights FLNA
Area of Science:
- Cardiovascular Biology
- Hematology
- Genetics
Background:
- Filaminopathies A are rare X-linked disorders caused by filamin A (FLNA) gene mutations.
- Patients often present with macrothrombocytopenia and defective platelets.
- A male patient with a C-terminal FLNa mutation showed enhanced platelet functions, suggesting thrombosis risk.
Purpose of the Study:
- To investigate the in vivo thrombotic potential of a specific FLNa mutation identified in a male patient.
Main Methods:
- Established a mutant FlnA knock-in mouse model to mimic the patient's condition.
- Analyzed platelet function, bleeding time, and thrombosis in vivo.
Main Results:
- Mutant FlnA mouse platelets exhibited enhanced aggregation, secretion, and activation, mirroring patient findings.
- Mice showed normal bleeding time but increased re-bleeding, indicating hemostatic plug instability.
- In vivo thrombosis models revealed increased arteriolar emboli, confirming thrombus instability.
Conclusions:
- The FLNa mutation induces platelet hyperfunction in vitro and thrombus instability in vivo.
- This suggests a complex role for FLNa in regulating thrombus formation and stability.
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