GPIbα–filamin A interaction regulates megakaryocyte localization and budding during platelet biogenesis

Author:

Ellis Marc L.12ORCID,Terreaux Antoine3,Alwis Imala12ORCID,Smythe Rhyll12,Perdomo Jose4ORCID,Eckly Anita5ORCID,Cranmer Susan L.6,Passam Freda H.12ORCID,Maclean Jessica12ORCID,Schoenwaelder Simone M.127ORCID,Ruggeri Zaverio M.8ORCID,Lanza Francois5,Taoudi Samir39,Yuan Yuping12,Jackson Shaun P.128ORCID

Affiliation:

1. 1Thrombosis Research Group, The Heart Institute, Newtown, NSW, Australia

2. 2Charles Perkins Centre, The University of Sydney, Camperdown, NSW, Australia

3. 3Blood Cell Formation Lab, Walter and Eliza Hall Institute, Parkville, VIC, Australia

4. 4Haematology Research Unit, St George and Sutherland Clinical School, Faculty of Medicine, University of New South Wales, Sydney, NSW, Australia

5. 5Université de Strasbourg, INSERM, French Blood Establishment (EFS) Grand Est, BPPS UMR-S 1255, FMTS, Strasbourg, France

6. 6Eastern Health Clinical School, Monash University, Box Hill, VIC, Australia

7. 7School of Medical Sciences, University of Sydney, Camperdown, NSW, Australia

8. 8Department of Molecular Medicine, MERU-Roon Research Center on Vascular Biology, The Scripps Research Institute, La Jolla, CA

9. 9The University of Melbourne, Parkville, VIC, Australia

Abstract

Abstract Glycoprotein Ibα (GPIbα) is expressed on the surface of platelets and megakaryocytes (MKs) and anchored to the membrane skeleton by filamin A (flnA). Although GPIb and flnA have fundamental roles in platelet biogenesis, the nature of this interaction in megakaryocyte biology remains ill-defined. We generated a mouse model expressing either human wild-type (WT) GPIbα (hGPIbαWT) or a flnA-binding mutant (hGPIbαFW) and lacking endogenous mouse GPIbα. Mice expressing the mutant GPIbα transgene exhibited macrothrombocytopenia with preserved GPIb surface expression. Platelet clearance was normal and differentiation of MKs to proplatelets was unimpaired in hGPIbαFW mice. The most striking abnormalities in hGPIbαFW MKs were the defective formation of the demarcation membrane system (DMS) and the redistribution of flnA from the cytoplasm to the peripheral margin of MKs. These abnormalities led to disorganized internal MK membranes and the generation of enlarged megakaryocyte membrane buds. The defective flnA-GPIbα interaction also resulted in misdirected release of buds away from the vasculature into bone marrow interstitium. Restoring the linkage between flnA and GPIbα corrected the flnA redistribution within MKs and DMS ultrastructural defects as well as restored normal bud size and release into sinusoids. These studies define a new mechanism of macrothrombocytopenia resulting from dysregulated MK budding. The link between flnA and GPIbα is not essential for the MK budding process, however, it plays a major role in regulating the structure of the DMS, bud morphogenesis, and the localized release of buds into the circulation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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