Background: The processes of leukemogenesis and differentiation of the megakaryo-erythroid lineage remain poorly understood. Leukemic cell lines derived from megakaryocytic leukemia are valuable reagents for studies on these events.
Materials And Methods: A new cell line, JAS-R, was established from a 64-year-old patient with acute megakaryocytic leukemia (AML M7). Its characteristics were studied by morphological, immunophenotypic and molecular biological analysis.
Results: Immunophenotyping showed that the JAS-R cells were positive for CD33, CD41 and CD61, as well as moderately to weakly positive for CD4, CD7, CD13 and glycophorin A. Chromosomal analysis revealed a composite karyotype, but no major translocation abnormalities were observed. Electron microscopy disclosed that the JAS-R cells had numerous surface blebs and some cells also had alpha-granules and demarcation membranes. The mRNAs of 4 major proteins (platelet factor 4, beta-thromboglobulin, selectin-P and thrombospondin 1) found in alpha-granules were all expressed by the JAS-R cells. In particular, expression of platelet factor 4 was high. To further characterize JAS-R cells, comparison with 4 other megakaryo-etythroid cell lines (CMK, MEG-01, K562 and KU812) was done by gene expression profiling using an oligo-DNA microarray. The results showed that JAS-R was a distinctive cell line. It was noteworthy that the JAS-R cells secreted erythropoietin and expressed erythropoietin receptor. A neutralizing antibody for erythropoietin partly inhibited the proliferation of the cells.
Conclusion: JAS-R may be a useful cell line for investigating the differentiation and leukemogenesis of megakaryo-erythroid cells and for studying the influence of erythropoietin on these cells.
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Anticancer Res
April 2008
Department of Molecular Genetics, Institute of DNA Medicine, Jikei University, School of Medicine, Tokyo 125-8506, Japan.
Background: Binding of integrins to the extracellular matrix elicits various responses. We have previously reported a megakaryocytic-erythroid cell line (JAS-R) that showed phenotypic changes after adhesion to plastic dishes. However, the matrix protein and the mechanism responsible for megakaryocytic differentiation still remain unknown.
View Article and Find Full Text PDFLeuk Res
November 2007
Department of Molecular Genetics, Institute of DNA Medicine, The Jikei University, School of Medicine, 3-25-8 Nishi-Shinbashi, Tokyo, Japan.
Adhesion is one of the important biologic characteristics of leukemic cells. We previously reported a new megakaryocytic-erythroid cell line, JAS-R. In this study, JAS-R cells were segregated into two types by the differences of attachment to culture dishes.
View Article and Find Full Text PDFAnticancer Res
May 2006
Division of General Medicine, Aoto Hospital, Jikei University School of Medicine, Tokyo 125-8506, Japan.
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