AKT/FOXO Signaling Enforces Reversible Differentiation Blockade in Myeloid Leukemias
Author(s) -
Stephen M. Sykes,
Steven Lane,
Lars Bullinger,
Demetrios Kalaitzidis,
Rushdia Z. Yusuf,
Borja Sáez,
Francesca Ferraro,
François Mercier,
Harshabad Singh,
Kristina Brumme,
Sanket S. Acharya,
Claudia Scholl,
Zuzana Tóthová,
Eyal C. Attar,
Stefan Fröhling,
Ronald A. DePinho,
D. Gary Gilliland,
Scott A. Armstrong,
David T. Scadden
Publication year - 2011
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2011.07.032
Subject(s) - protein kinase b , myeloid leukemia , biology , foxo1 , cancer research , myeloid , blockade , leukemia , signal transduction , microbiology and biotechnology , immunology , receptor , genetics
AKT activation is associated with many malignancies, where AKT acts, in part, by inhibiting FOXO tumor suppressors. We show a converse role for AKT/FOXOs in acute myeloid leukemia (AML). Rather than decreased FOXO activity, we observed that FOXOs are active in ∼40% of AML patient samples regardless of genetic subtype. We also observe this activity in human MLL-AF9 leukemia allele-induced AML in mice, where either activation of Akt or compound deletion of FoxO1/3/4 reduced leukemic cell growth, with the latter markedly diminishing leukemia-initiating cell (LIC) function in vivo and improving animal survival. FOXO inhibition resulted in myeloid maturation and subsequent AML cell death. FOXO activation inversely correlated with JNK/c-JUN signaling, and leukemic cells resistant to FOXO inhibition responded to JNK inhibition. These data reveal a molecular role for AKT/FOXO and JNK/c-JUN in maintaining a differentiation blockade that can be targeted to inhibit leukemias with a range of genetic lesions.
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