bioRxiv · 10.1101/2020.12.21.414649
Dynamic regulation of hierarchical heterogeneity in Acute Myeloid Leukemia serves as a tumor immunoevasion mechanism
Abstract
Acute Myeloid Leukemia, a hematological malignancy with poor clinical outcome, is composed of hierarchically heterogeneous cells. We examine the contribution of this heterogeneity to disease progression in the context of anti-tumor immune responses and investigate whether these responses regulate the balance between stemness and differentiation in AML. Combining phenotypic analysis with proliferation dynamics and fate-mapping of AML cells in a murine AML model, we demonstrate the presence of a terminally differentiated, chemoresistant population expressing high levels of PDL1. We show that PDL1 upregulation in AML cells, following exposure to IFN{gamma} from activated T cells, is coupled with AML differentiation and the dynamic balance between proliferation, versus differentiation and immunosuppression, facilitates disease progression in the presence of immune responses. This microenvironment-responsive hierarchical heterogeneity in AML may be key in facilitating disease growth at the population level at multiple stages of disease, including following bone marrow transplantation and immunotherapy.
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Pospori, C., Grey, W., Gonzalez-Anton, S., Gibson, S. V., Georgiou, C., Birch, F., Stevens, G., Williams, T., Khorshed, R., Haltalli, M. L. R., Skoufou-Papoutsaki, M.-N., Sloan, K., Encabo, H. H., Hopkins, J., Christodoulidou, C., Stampoulis, D., Hearn-Yates, F., Gribben, J., Stauss, H. J., Chakraverty, R., Bonnet, D., Lo Celso, C. L.. 2020-12-22. Dynamic regulation of hierarchical heterogeneity in Acute Myeloid Leukemia serves as a tumor immunoevasion mechanism. https://doi.org/10.1101/2020.12.21.414649
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