c-Myc–mediated control of cell fate in megakaryocyte-erythrocyte progenitors

Author:

Guo Yinshi1,Niu Chao2,Breslin Peter13,Tang Minghui1,Zhang Shubin1,Wei Wei1,Kini Ameet R.4,Paner Gladell P.4,Alkan Serhan4,Morris Stephan W.2,Diaz Manuel1,Stiff Patrick J.1,Zhang Jiwang14

Affiliation:

1. Oncology Institute, Cardinal Bernardin Cancer Center, Loyola University Medical Center, Maywood, IL;

2. Department of Pathology, St Jude Children's Research Hospital, Memphis, TN;

3. Department of Biology, Loyola University Chicago, IL; and

4. Pathology Department, Loyola University Medical Center, Maywood, IL

Abstract

Abstract It has been found that c-Myc protein plays a critical role in controlling self-renewal versus differentiation in hematopoietic stem cells. We report that c-Myc also controls the fate of megakaryocyte-erythrocyte progenitors through regulating the differentiation of erythroid and megakaryocytic progenitors. In addition to the significant reduction of granulocytes/macrophages and B and T lymphocytes because of the reduction of their corresponding progenitors, we found significantly increased numbers of megakaryocytic progenitors and mature megakaryocytes in bone marrow and spleens of c-Myc-knockout (c-Myc−/−) mice. Differentiation of erythrocytes was blocked at the erythroid progenitor stage. This increased megakaryocytopoiesis is a cell-intrinsic defect of c-Myc-mutant hematopoietic stem cells, as shown by transplantation studies. Furthermore, we found that c-Myc is required for polyploidy formation but not for cytoplasmic maturation of megakaryocytes. Megakaryocytes from c-Myc−/− mice are significantly smaller in size and lower in ploidy than those of control mice; however, because of the dramatic increase in megakaryocyte number, although fewer platelets are produced by each megakaryocyte, a greater than 3-fold increase in platelet number was consistently observed in c-Myc−/− mice. Thus, c-Myc−/− mice develop a syndrome of severe thrombocytosis-anemia-leukopenia because of significant increases in megakaryocytopoiesis and concomitant blockage of erythrocyte differentiation and reductions in myelolymphopoiesis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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