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Stress hematopoiesis reveals abnormal control of self-renewal, lineage bias, and myeloid differentiation in Mll partial tandem duplication (Mll-PTD) hematopoietic stem/progenitor cells

Authors :
H. Leighton Grimes
Yue Zhang
James C. Mulloy
Zhijian Xiao
Yalan Rao
Rajeana M. Conway
Nicholas Zorko
David P. Witte
Susan P. Whitman
Susumu Goyama
Guido Marcucci
Xinghui Zhao
Xiaomei Yan
Kelsie M. Bernot
Gang Huang
Qianfei Wang
Michael A. Caligiuri
Goro Sashida
Daniel G. Tenen
Source :
Blood. 120:1118-1129
Publication Year :
2012
Publisher :
American Society of Hematology, 2012.

Abstract

One mechanism for disrupting the MLL gene in myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML) is through partial tandem duplication (MLL-PTD); however, the mechanism by which MLL-PTD contributes to MDS and AML development and maintenance is currently unknown. Herein, we investigated hematopoietic stem/progenitor cell (HSPC) phenotypes of Mll-PTD knock-in mice. Although HSPCs (Lin−Sca1+Kit+ (LSK)/SLAM+ and LSK) in MllPTD/WT mice are reduced in absolute number in steady state because of increased apoptosis, they have a proliferative advantage in colony replating assays, CFU-spleen assays, and competitive transplantation assays over wild-type HSPCs. The MllPTD/WT-derived phenotypic short-term (ST)–HSCs/multipotent progenitors and granulocyte/macrophage progenitors have self-renewal capability, rescuing hematopoiesis by giving rise to long-term repopulating cells in recipient mice with an unexpected myeloid differentiation blockade and lymphoid-lineage bias. However, MllPTD/WT HSPCs never develop leukemia in primary or recipient mice, suggesting that additional genetic and/or epigenetic defects are necessary for full leukemogenic transformation. Thus, the Mll-PTD aberrantly alters HSPCs, enhances self-renewal, causes lineage bias, and blocks myeloid differentiation. These findings provide a framework by which we can ascertain the underlying pathogenic role of MLL-PTD in the clonal evolution of human leukemia, which should facilitate improved therapies and patient outcomes.

Details

ISSN :
15280020 and 00064971
Volume :
120
Database :
OpenAIRE
Journal :
Blood
Accession number :
edsair.doi.dedup.....d6218b1411752932e952b47d4de3d898