miR-125a-5p regulates megakaryocyte proplatelet formation via the actin-bundling protein L-plastin

Author:

Bhatlekar Seema1ORCID,Manne Bhanu K.1ORCID,Basak Indranil1,Edelstein Leonard C.2ORCID,Tugolukova Emilia1,Stoller Michelle L.1,Cody Mark J.1,Morley Sharon C.34ORCID,Nagalla Srikanth5,Weyrich Andrew S.16,Rowley Jesse W.16,O’Connell Ryan M.78,Rondina Matthew T.1910,Campbell Robert A.110,Bray Paul F.111ORCID

Affiliation:

1. Program in Molecular Medicine, University of Utah, Salt Lake City, UT;

2. Cardeza Foundation for Hematologic Research, Thomas Jefferson University, Philadelphia, PA;

3. Division of Infectious Diseases, Department of Pediatrics and

4. Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, MO;

5. Division of Hematology and Oncology, Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX;

6. Division of Pulmonary, Department of Internal Medicine,

7. Division of Microbiology and Immunology, Department of Pathology, and

8. Huntsman Cancer Institute, University of Utah, Salt Lake City, UT;

9. Geriatric Research, Education and Clinical Center, George E. Wahlen VAMC GRECC, Salt Lake City, UT; and

10. Division of General Internal Medicine and

11. Division of Hematology and Hematologic Malignancies, Department of Internal Medicine, University of Utah, Salt Lake City, UT

Abstract

AbstractThere is heritability to interindividual variation in platelet count, and better understanding of the regulating genetic factors may provide insights for thrombopoiesis. MicroRNAs (miRs) regulate gene expression in health and disease, and megakaryocytes (MKs) deficient in miRs have lower platelet counts, but information about the role of miRs in normal human MK and platelet production is limited. Using genome-wide miR profiling, we observed strong correlations among human bone marrow MKs, platelets, and differentiating cord blood–derived MK cultures, and identified MK miR-125a-5p as associated with human platelet number but not leukocyte or hemoglobin levels. Overexpression and knockdown studies showed that miR-125a-5p positively regulated human MK proplatelet (PP) formation in vitro. Inhibition of miR-125a-5p in vivo lowered murine platelet counts. Analyses of MK and platelet transcriptomes identified LCP1 as a miR-125a-5p target. LCP1 encodes the actin-bundling protein, L-plastin, not previously studied in MKs. We show that miR-125a-5p directly targets and reduces expression of MK L-plastin. Overexpression and knockdown studies show that L-plastin promotes MK progenitor migration, but negatively correlates with human platelet count and inhibits MK PP formation (PPF). This work provides the first evidence for the actin-bundling protein, L-plastin, as a regulator of human MK PPF via inhibition of the late-stage MK invagination system, podosome and PPF, and PP branching. We also provide resources of primary and differentiating MK transcriptomes and miRs associated with platelet counts. miR-125a-5p and L-plastin may be relevant targets for increasing in vitro platelet manufacturing and for managing quantitative platelet disorders.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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