[PDF][PDF] miR-126 regulates distinct self-renewal outcomes in normal and malignant hematopoietic stem cells

ER Lechman, B Gentner, SWK Ng, EM Schoof… - Cancer cell, 2016 - cell.com
ER Lechman, B Gentner, SWK Ng, EM Schoof, P van Galen, JA Kennedy, S Nucera, F Ciceri…
Cancer cell, 2016cell.com
To investigate miRNA function in human acute myeloid leukemia (AML) stem cells (LSC), we
generated a prognostic LSC-associated miRNA signature derived from functionally
validated subpopulations of AML samples. For one signature miRNA, miR-126, high
bioactivity aggregated all in vivo patient sample LSC activity into a single sorted population,
tightly coupling miR-126 expression to LSC function. Through functional studies, miR-126
was found to restrain cell cycle progression, prevent differentiation, and increase self …
Summary
To investigate miRNA function in human acute myeloid leukemia (AML) stem cells (LSC), we generated a prognostic LSC-associated miRNA signature derived from functionally validated subpopulations of AML samples. For one signature miRNA, miR-126, high bioactivity aggregated all in vivo patient sample LSC activity into a single sorted population, tightly coupling miR-126 expression to LSC function. Through functional studies, miR-126 was found to restrain cell cycle progression, prevent differentiation, and increase self-renewal of primary LSC in vivo. Compared with prior results showing miR-126 regulation of normal hematopoietic stem cell (HSC) cycling, these functional stem effects are opposite between LSC and HSC. Combined transcriptome and proteome analysis demonstrates that miR-126 targets the PI3K/AKT/MTOR signaling pathway, preserving LSC quiescence and promoting chemotherapy resistance.
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