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FOXM1 regulates leukemia stem cell quiescence and survival in MLL-rearranged AML.


ABSTRACT: FOXM1, a known transcription factor, promotes cell proliferation in a variety of cancer cells. Here we show that Foxm1 is required for survival, quiescence and self-renewal of MLL-AF9 (MA9)-transformed leukemia stem cells (LSCs) in vivo. Mechanistically, Foxm1 upregulation activates the Wnt/?-catenin signaling pathways by directly binding to ?-catenin and stabilizing ?-catenin protein through inhibiting its degradation, thereby preserving LSC quiescence, and promoting LSC self-renewal in MLL-rearranged AML. More importantly, inhibition of FOXM1 markedly suppresses leukemogenic potential and induces apoptosis of primary LSCs from MLL-rearranged AML patients in vitro and in vivo in xenograft mice. Thus, our study shows a critical role and mechanisms of Foxm1 in MA9-LSCs, and indicates that FOXM1 is a potential therapeutic target for selectively eliminating LSCs in MLL-rearranged AML.

SUBMITTER: Sheng Y 

PROVIDER: S-EPMC7026046 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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FOXM1 regulates leukemia stem cell quiescence and survival in MLL-rearranged AML.

Sheng Yue Y   Yu Chunjie C   Liu Yin Y   Hu Chao C   Ma Rui R   Lu Xinyan X   Ji Peng P   Chen Jianjun J   Mizukawa Benjamin B   Huang Yong Y   Licht Jonathan D JD   Qian Zhijian Z  

Nature communications 20200217 1


FOXM1, a known transcription factor, promotes cell proliferation in a variety of cancer cells. Here we show that Foxm1 is required for survival, quiescence and self-renewal of MLL-AF9 (MA9)-transformed leukemia stem cells (LSCs) in vivo. Mechanistically, Foxm1 upregulation activates the Wnt/β-catenin signaling pathways by directly binding to β-catenin and stabilizing β-catenin protein through inhibiting its degradation, thereby preserving LSC quiescence, and promoting LSC self-renewal in MLL-rea  ...[more]

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