Novel insights into mouse models of ectopic proplatelet release

Author:

Spindler Markus1,Bergmeier Wolfgang2ORCID,Stradal Theresia E. B.3ORCID,Zhang Jinyi4,Siminovitch Katherine A.4,Nicolai Leo56ORCID,Reinhold Annegret7,Bender Markus1ORCID

Affiliation:

1. 1Department of Experimental Biomedicine, University Hospital and Rudolf Virchow Center, Wuerzburg, Germany

2. 2Department of Biochemistry and Biophysics, UNC Blood Research Center, Chapel Hill, NC

3. 3Helmholtz Centre for Infection Research, Braunschweig, Germany

4. 4Departments of Medicine and Immunology, University of Toronto, Lunenfeld Tanenbaum Research Institute, Mount Sinai Hospital, Toronto, ON, Canada

5. 5Department of Medicine I, University Hospital, Ludwig-Maximilians University Munich, Munich, Germany

6. 6German Centre for Cardiovascular Research (DZHK), Partner Site Munich Heart Alliance, Munich, Germany

7. 7Institute of Molecular and Clinical Immunology, University of Magdeburg, Magdeburg, Germany

Abstract

Abstract Mature bone marrow (BM) megakaryocytes (MKs) produce platelets by extending proplatelets into sinusoidal blood vessels. Defects in this process can lead to thrombocytopenia and increased risk of bleeding. Mice lacking the actin-regulatory proteins Profilin 1 (PFN1), Wiskott–Aldrich Syndrome protein (WASp), Actin Related Protein 2/3 complex (Arp2/3), or adhesion and degranulation-promoting adapter protein (ADAP) display thrombocytopenia and ectopic release of (pro)platelet-like particles into the BM compartment, pointing to an important axis of actin-mediated directional proplatelet formation. The mechanism underlying ectopic release in these mice is still not completely understood. However, we hypothesized that similar functional defects account for this observation. We analyzed WASp-, ADAP-, PFN1-, and ARPC2-knockout mice to determine the role of actin reorganization and integrin activation in directional proplatelet formation. ADAP-, ARPC2-, and PFN1-deficient MKs displayed reduced adhesion to collagen, defective F-actin organization, and diminished β1-integrin activation. WASp-deficient MKs showed the strongest reduction in the adhesion assay of collagen and altered F-actin organization with reduced podosome formation. Our results indicate that ADAP, PFN1, WASp, and ARP2/3 are part of the same pathway that regulates polarization processes in MKs and directional proplatelet formation into BM sinusoids.

Publisher

American Society of Hematology

Subject

Hematology

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