下调和上调
单倍率不足
发病机制
造血
调节器
生物
基因剔除小鼠
细胞生物学
再生障碍性贫血
骨髓
红细胞生成
癌症研究
运行x1
干细胞
免疫学
泛素
内科学
贫血
表型
医学
遗传学
受体
基因
作者
Chengfang Zhou,Mei Kuang,Zhilong Liu,Xiaoqin Jia,Zhe Chen,Yuanyuan Liu,Zhigang Li,Weiru Wu,Le Ma,Jieping Chen,Yu Hou
出处
期刊:Leukemia
[Springer Nature]
日期:2021-10-11
卷期号:36 (3): 834-846
被引量:4
标识
DOI:10.1038/s41375-021-01445-5
摘要
FZR1 has been implicated as a master regulator of the cell cycle and quiescence, but its roles and molecular mechanisms in the pathogenesis of severe aplastic anemia (SAA) are unclear. Here, we report that FZR1 is downregulated in SAA HSCs compared with healthy control and is associated with decreased quiescence of HSC. Haploinsufficiency of Fzr1 shows impaired quiescence and self-renewal ability of HSC in two Fzr1 heterozygous knockout mouse models. Mechanistically, FZR1 insufficiency inhibits the ubiquitination of RUNX1 protein at lysine 125, leading to the accumulation of RUNX1 protein, which disturbs the quiescence of HSCs in SAA patients. Moreover, downregulation of Runx1 reversed the loss of quiescence and impaired long-term self-renew ability in Fzr1+/- HSCs in vivo and impaired repopulation capacity in BM from SAA patients in vitro. Our findings, therefore, raise the possibility of a decisive role of the FZR1-RUNX1 pathway in the pathogenesis of SAA via deregulation of HSC quiescence.
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