Meis1 regulates the metabolic phenotype and oxidant defense of hematopoietic stem cells

被引:168
作者
Kocabas, Fatih [1 ]
Zheng, Junke [2 ,3 ,4 ]
Thet, Suwannee [1 ]
Copeland, Neal G. [5 ]
Jenkins, Nancy A. [5 ]
DeBerardinis, Ralph J. [6 ,7 ]
Zhang, Chengcheng [2 ,3 ]
Sadek, Hesham A. [1 ]
机构
[1] UT SW Med Ctr, Dept Internal Med, Div Cardiol, Dallas, TX 75390 USA
[2] UT SW Med Ctr, Dept Physiol, Dallas, TX 75390 USA
[3] UT SW Med Ctr, Dept Dev Biol, Dallas, TX 75390 USA
[4] Shanghai Jiao Tong Univ, Sch Med, Chinese Minist Educ, Key Lab Cell Differentiat & Apoptosis, Shanghai 200030, Peoples R China
[5] Methodist Hosp, Res Inst, Houston, TX 77030 USA
[6] UT SW Med Ctr, Dept Pediat, Dallas, TX 75390 USA
[7] UT SW Med Ctr, Dept Genet, Dallas, TX 75390 USA
基金
美国国家卫生研究院;
关键词
PAS DOMAIN PROTEIN-1; MYELOID-LEUKEMIA; UP-REGULATION; IN-VITRO; C-MYC; EXPRESSION; HYPOXIA; HIF-1; HIF-1-ALPHA; ADAPTATION;
D O I
10.1182/blood-2012-05-432260
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The role of Meis1 in leukemia is well established, but its role in hematopoietic stem cells (HSCs) remains poorly understood. Previously, we showed that HSCs use glycolytic metabolism to meet their energy demands. However, the mechanism of regulation of HSC metabolism, and the importance of maintaining this distinct metabolic phenotype on HSC function has not been determined. More importantly, the primary function of Meis1 in HSCs remains unknown. Here, we examined the effect of loss of Meis1 on HSC function and metabolism. Inducible Meis1 deletion in adult mouse HSCs resulted in loss of HSC quiescence, and failure of bone marrow repopulation after transplantation. While we previously showed that Meis1 regulates Hif-1 alpha transcription in vitro, we demonstrate here that loss of Meis1 results in down-regulation of both Hif-1 alpha and Hif-2 alpha in HSCs. This resulted in a shift to mitochondrial metabolism, increased reactive oxygen species production, and apoptosis of HSCs. Finally, we demonstrate that the effect of Meis1 knockout on HSCs is entirely mediated through reactive oxygen species where treatment of the Meis1 knockout mice with the scavenger N-acetylcystein restored HSC quiescence and rescued HSC function. These results uncover an important transcriptional network that regulates metabolism, oxidant defense, and maintenance of HSCs. (Blood. 2012; 120(25): 4963-4972)
引用
收藏
页码:4963 / 4972
页数:10
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