细胞生物学
ATF4
生物
核糖体生物发生
造血
红细胞生成
干细胞
转录因子
骨髓
免疫学
未折叠蛋白反应
遗传学
核糖核酸
核糖体
内科学
医学
贫血
基因
内质网
作者
Zhaofeng Zheng,Shangda Yang,Fanglin Gou,Chao Tang,Zhaoru Zhang,Quan Gu,Guohuan Sun,Penglei Jiang,N. Wang,Xiangnan Zhao,Junnan Kang,Yifei Wang,Yicheng He,Meng Yang,Ting Lü,Shihong Lu,Pengxu Qian,Ping Zhu,Hui Cheng,Tao Cheng
出处
期刊:Blood
[American Society of Hematology]
日期:2024-04-24
被引量:1
标识
DOI:10.1182/blood.2023021901
摘要
Hematopoietic differentiation is controlled by intrinsic regulators and the extrinsic hematopoietic niche. Activating transcription factor 4 (ATF4) plays a crucial role in the function of fetal and adult hematopoietic stem cell maintenance; however, the precise function of ATF4 in the bone marrow niche and the mechanism by which ATF4 regulates adult hematopoiesis remain largely unknown. Here, we employ four cell-type-specific mouse Cre lines to achieve conditional knockout of Atf4 in Cdh5+ endothelial cells, Prx1+ bone marrow stromal cells, Osx+ osteo-progenitor cells, and Mx1+ hematopoietic cells, and uncover the role of Atf4 in niche cells and hematopoiesis. Intriguingly, depletion of Atf4 in niche cells does not affect hematopoiesis; however, Atf4-deficient hematopoietic cells exhibit erythroid differentiation defects, leading to hypoplastic anemia. Mechanistically, ATF4 mediates direct regulation of Rps19bp1 transcription, which is, in turn, involved in 40S ribosomal subunit assembly to coordinate ribosome biogenesis and promote erythropoiesis. Finally, we demonstrate that under conditions of 5-fluorouracil-induced stress, Atf4 depletion impedes the recovery of hematopoietic lineages, which requires efficient ribosome biogenesis. Taken together, our findings highlight the indispensable role of the ATF4-RPS19BP1 axis in the regulation of erythropoiesis.-
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