Related Experiment Video
Updated: Nov 26, 2025

Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
MYC-induced human acute myeloid leukemia requires a continuing IL-3/GM-CSF costimulus
Elizabeth Bulaeva1,2, Davide Pellacani1, Naoto Nakamichi1
1Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, BC, Canada.
Abstract:
Hematopoietic clones with leukemogenic mutations arise in healthy people as they age, but progression to acute myeloid leukemia (AML) is rare. Recent evidence suggests that the microenvironment may play an important role in modulating human AML population dynamics. To investigate this concept further, we examined the combined and separate effects of an oncogene (c-MYC) and exposure to interleukin-3 (IL-3), granulocyte-macrophage colony-stimulating factor (GM-CSF), and stem cell factor (SCF) on the experimental genesis of a human AML in xenografted immunodeficient mice. Initial experiments showed that normal human CD34+ blood cells transduced with a lentiviral MYC vector and then transplanted into immunodeficient mice produced a hierarchically organized, rapidly fatal, and serially transplantable blast population, phenotypically and transcriptionally similar to human AML cells, but only in mice producing IL-3, GM-CSF, and SCF transgenically or in regular mice in which the cells were exposed to IL-3 or GM-CSF delivered using a cotransduction strategy. In their absence, the MYC+ human cells produced a normal repertoire of lymphoid and myeloid progeny in transplanted mice for many months, but, on transfer to secondary mice producing the human cytokines, the MYC+ cells rapidly generated AML. Indistinguishable diseases were also obtained efficiently from both primitive (CD34+CD38-) and late granulocyte-macrophage progenitor (GMP) cells. These findings underscore the critical role that these cytokines can play in activating a malignant state in normally differentiating human hematopoietic cells in which MYC expression has been deregulated. They also introduce a robust experimental model of human leukemogenesis to further elucidate key mechanisms involved and test strategies to suppress them.
Insights
The microenvironment, specifically cytokines like IL-3, GM-CSF, and SCF, is crucial for activating acute myeloid leukemia (AML) in individuals with deregulated MYC expression. This discovery offers a new model for studying AML development.
Area of Science:
- Hematology
- Cancer Biology
- Immunology
Background:
- Hematopoietic stem cells can acquire mutations leading to leukemia, but progression to acute myeloid leukemia (AML) is infrequent.
- The tumor microenvironment is increasingly recognized for its role in influencing AML progression and dynamics.
Purpose of the Study:
- To investigate the role of specific cytokines (IL-3, GM-CSF, SCF) and the oncogene c-MYC in the experimental genesis of human AML.
- To establish a robust xenograft model for studying human leukemogenesis.
Main Methods:
- Normal human CD34+ cells were transduced with a lentiviral MYC vector.
- Cells were transplanted into immunodeficient mice, with varying exposure to cytokines (IL-3, GM-CSF, SCF) via transgenic expression or cotransduction.
- The capacity of MYC-expressing cells to induce AML was assessed in primary and secondary recipients.
Main Results:
- MYC-transduced human hematopoietic cells generated AML only in the presence of IL-3, GM-CSF, and SCF.
- In the absence of these cytokines, MYC+ cells differentiated normally but could induce AML upon subsequent cytokine exposure.
- AML could be efficiently generated from both primitive CD34+CD38- cells and later granulocyte-macrophage progenitors (GMPs).
Conclusions:
- Specific microenvironmental cytokines (IL-3, GM-CSF, SCF) are critical for activating malignant transformation in human hematopoietic cells with deregulated MYC.
- These cytokines play a key role in initiating AML in the context of oncogene activation.
- The study provides a valuable experimental model for further research into AML mechanisms and therapeutic strategies.
Related Concept Videos
Differentiation of Common Myeloid Progenitor Cells
Regulation of Hematopoietic Stem Cells

