| Literature DB >> 32531268 |
Rui Su1, Lei Dong1, Yangchan Li2, Min Gao3, Li Han4, Mark Wunderlich5, Xiaolan Deng1, Hongzhi Li6, Yue Huang7, Lei Gao8, Chenying Li9, Zhicong Zhao10, Sean Robinson1, Brandon Tan1, Ying Qing1, Xi Qin1, Emily Prince1, Jun Xie6, Hanjun Qin11, Wei Li1, Chao Shen1, Jie Sun12, Prakash Kulkarni13, Hengyou Weng1, Huilin Huang1, Zhenhua Chen1, Bin Zhang14, Xiwei Wu11, Mark J Olsen15, Markus Müschen16, Guido Marcucci14, Ravi Salgia13, Ling Li14, Amir T Fathi17, Zejuan Li18, James C Mulloy5, Minjie Wei19, David Horne6, Jianjun Chen20.
Abstract
Fat mass and obesity-associated protein (FTO), an RNA N6-methyladenosine (m6A) demethylase, plays oncogenic roles in various cancers, presenting an opportunity for the development of effective targeted therapeutics. Here, we report two potent small-molecule FTO inhibitors that exhibit strong anti-tumor effects in multiple types of cancers. We show that genetic depletion and pharmacological inhibition of FTO dramatically attenuate leukemia stem/initiating cell self-renewal and reprogram immune response by suppressing expression of immune checkpoint genes, especially LILRB4. FTO inhibition sensitizes leukemia cells to T cell cytotoxicity and overcomes hypomethylating agent-induced immune evasion. Our study demonstrates that FTO plays critical roles in cancer stem cell self-renewal and immune evasion and highlights the broad potential of targeting FTO for cancer therapy.Entities:
Keywords: FTO; LILRB4; LSC/LIC self-renewal; N(6)-methyladenosine (m(6)A) modification; immune checkpoint genes; immune evasion; inhibitors; leukemia; solid tumors; therapeutics
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Year: 2020 PMID: 32531268 PMCID: PMC7363590 DOI: 10.1016/j.ccell.2020.04.017
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 38.585