髓系白血病
生物
癌症研究
RNA剪接
白血病
分子生物学
表型
RNA结合蛋白
造血
髓样
信使核糖核酸
HEK 293细胞
核糖核酸
选择性拼接
基因
细胞培养
免疫沉淀
移植
干细胞
转染
作者
Ping Liu,Sulin Zhang,Bing-Yi Chen,Binhe Chang,Y Jiang,Li X,Xinchi Chen,Zi-Juan Li,Yang Ruirui,Xiaoning Wang,Chunhui Xu,Xiaomeng Liu,Na Liu,Yuanyuan Jia,Pengcheng Yu,Yue Wang,Li-Juan Zong,Cheng-Long Hu,Hui Hou,Duanhua Cao
标识
DOI:10.1126/scitranslmed.adv8951
摘要
Leukemia is a malignant tumor with a high recurrence rate and poor prognosis for patients. Thus, there is an urgent need to explore new therapeutic targets that play critical roles in leukemogenesis but have little effect on normal hematopoietic cells. Here, we show that RNA binding protein with multiple splicing (RBPMS), which is highly expressed in acute myeloid leukemia (AML) and associated with poor prognosis of AML, plays critical roles in leukemogenesis. Our study shows that inhibition of RBPMS inhibits self-renewal of leukemia-initiating cells (LICs) and leukemia development but has little effect on normal hematopoiesis. Mechanistically, RBPMS recruits the N 6 -methyladenosine (m 6 A) reader insulin-like growth factor 2 mRNA binding protein 3 (IGF2BP3), which promotes the stability of the forkhead box O1 ( FOXO1 ) mRNA in an m 6 A-dependent manner. Moreover, RBPMS contributes to the progression of leukemia by directly binding to FOXO1 and promoting FOXO1-regulated glycolysis. Overexpression of FOXO1 has been shown to reverse RBPMS inhibition–induced phenotypes in both leukemic cells and mouse models. We also designed a specific inhibitor of RBPMS that has therapeutic effects in AML patient-derived xenograft (PDX) models. We therefore highlight RBPMS as a promising drug target for leukemia therapy.
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