Disrupted filamin A/αIIbβ3 interaction induces macrothrombocytopenia by increasing RhoA activity

Author:

Donada Alessandro12ORCID,Balayn Nathalie1,Sliwa Dominika1,Lordier Larissa1,Ceglia Valentina1,Baschieri Francesco1ORCID,Goizet Cyril34,Favier Rémi15ORCID,Tosca Lucie6ORCID,Tachdjian Gérard6ORCID,Denis Cecile V.7ORCID,Plo Isabelle1ORCID,Vainchenker William1ORCID,Debili Najet1,Rosa Jean-Philippe7ORCID,Bryckaert Marijke7ORCID,Raslova Hana1ORCID

Affiliation:

1. Unité Mixte de Recherche (UMR) 1170, INSERM, Equipe Labelllisée Ligue Nationale Contre le Cancer, Gustave Roussy Cancer Campus, Université Paris-Sud, Université Paris-Saclay, Villejuif, France;

2. Ecole Doctorale Hematopoïèse, Oncogénèse et Biothérapie, Université Paris Diderot, Université Sorbonne Paris Cité, Paris, France;

3. Centre de Référence Neurogénétique, Hôpital Pellegrin, University Hospital of Bordeaux, Bordeaux, France;

4. Laboratoire Maladies Rares: Génétique et Métabolisme, UMR 1211, INSERM, Université Bordeaux, Bordeaux, France;

5. Hematological Laboratory, French Reference Center for Platelet Disorders, Armand Trousseau Children Hospital, Assistance Publique–Hôpitaux de Paris (AP-HP), Paris, France;

6. UMR 967, INSERM, Service d’Histologie Embryologie et Cytogénétique, Hôpitaux Universitaires Paris-Sud, AP-HP, Clamart, France; and

7. Hémostase, Inflammation, Thrombose, UMR S1176, INSERM, Université Paris-Sud, Université Paris-Saclay, Le Kremlin Bicêtre, France

Abstract

Abstract Filamin A (FLNa) links the cell membrane with the cytoskeleton and is central in several cellular processes. Heterozygous mutations in the X-linked FLNA gene are associated with a large spectrum of conditions, including macrothrombocytopenia, called filaminopathies. Using an isogenic pluripotent stem cell model derived from patients, we show that the absence of the FLNa protein in megakaryocytes (MKs) leads to their incomplete maturation, particularly the inability to produce proplatelets. Reduction in proplatelet formation potential is associated with a defect in actomyosin contractility, which results from inappropriate RhoA activation. This dysregulated RhoA activation was observed when MKs were plated on fibrinogen but not on other matrices (fibronectin, vitronectin, collagen 1, and von Willebrand factor), strongly suggesting a role for FLNa/αIIbβ3 interaction in the downregulation of RhoA activity. This was confirmed by experiments based on the overexpression of FLNa mutants deleted in the αIIbβ3-binding domain and the RhoA-interacting domain, respectively. Finally, pharmacological inhibition of the RhoA-associated kinase ROCK1/2 restored a normal phenotype and proplatelet formation. Overall, this work suggests a new etiology for macrothrombocytopenia, in which increased RhoA activity is associated with disrupted FLNa/αIIbβ3 interaction.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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