G6b-B regulates an essential step in megakaryocyte maturation

Author:

Becker Isabelle C.12ORCID,Nagy Zoltan12ORCID,Manukjan Georgi1,Haffner-Luntzer Melanie3ORCID,Englert Maximilian12ORCID,Heib Tobias12,Vögtle Timo12ORCID,Gross Carina12,Bharti Richa4,Dietrich Sascha4,Mott Kristina1,Heck Johannes1ORCID,Stegmaier Sebastian1,Baranowsky Anke5,Schinke Thorsten5,Schlegel Nicolas6ORCID,Heckel Tobias4,Stegner David12ORCID,Pleines Irina12ORCID,Ignatius Anita3ORCID,Schulze Harald1ORCID,Nieswandt Bernhard12ORCID

Affiliation:

1. Institute of Experimental Biomedicine, University Hospital Würzburg, and

2. Rudolf Virchow Center for Integrative and Translational Bioimaging, University of Würzburg, Würzburg, Germany;

3. Institute of Orthopaedic Research and Biomechanics, University Medical Center Ulm, Ulm, Germany;

4. Core Unit Systems Medicine, University of Würzburg, Würzburg, Germany;

5. Department of Osteology and Biomechanics, University Medical Center Hamburg-Eppendorf, Hamburg, Germany; and

6. Department of General Visceral, Vascular, and Paediatric Surgery, Department of Surgery I, University of Würzburg, Würzburg, Germany

Abstract

Abstract G6b-B is a megakaryocyte lineage-specific immunoreceptor tyrosine-based inhibition motif–containing receptor, essential for platelet homeostasis. Mice with a genomic deletion of the entire Mpig6b locus develop severe macrothrombocytopenia and myelofibrosis, which is reflected in humans with null mutations in MPIG6B. The current model proposes that megakaryocytes lacking G6b-B develop normally, whereas proplatelet release is hampered, but the underlying molecular mechanism remains unclear. We report on a spontaneous recessive single nucleotide mutation in C57BL/6 mice, localized within the intronic region of the Mpig6b locus that abolishes G6b-B expression and reproduces macrothrombocytopenia, myelofibrosis, and osteosclerosis. As the mutation is based on a single-nucleotide exchange, Mpig6bmut mice represent an ideal model to study the role of G6b-B. Megakaryocytes from these mice were smaller, displayed a less-developed demarcation membrane system, and had a reduced expression of receptors. RNA sequencing revealed a striking global reduction in the level of megakaryocyte-specific transcripts, in conjunction with decreased protein levels of the transcription factor GATA-1 and impaired thrombopoietin signaling. The reduced number of mature MKs in the bone marrow was corroborated on a newly developed Mpig6b-null mouse strain. Our findings highlight an unexpected essential role of G6b-B in the early differentiation within the megakaryocytic lineage.

Publisher

American Society of Hematology

Subject

Hematology

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