Key Laboratory of Stem Cell Biology and State Key Laboratory of Medical Genomics and Laboratory of Development and Diseases, Institute of Health Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences & Shanghai Jiao Tong University School of Medicine, and Shanghai Institute of Hematology, RuiJin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, People's Republic of China.
Blood. 2011 Oct 6;118(14):3842-52. doi: 10.1182/blood-2010-12-327908. Epub 2011 Aug 9.
The primitive hematopoietic stem/progenitor cells (HSPCs) during embryonic hematopoiesis are thought to be short-lived (SL) with limited self-renewal potential. The fate and consequence of these short-lived HSPCs, once reprogrammed into "long-lived" in a living animal body, remain unknown. Here we show that targeted expression of a dominant-negative C/ebpα (C/ebpαDN) in the primitive SL-HSPCs during zebrafish embryogenesis extends their life span, allowing them to survive to later developmental stage to colonize the definitive hematopoietic sites, where they undergo a proliferative expansion followed by erythropoietic dysplasia and embryonic lethality because of circulation congestion. Mechanistically, C/ebpαDN binds to a conserved C/EBP-binding motif in the promoter region of bmi1 gene, associated with a specific induction of bmi1 transcription in the transgenic embryos expressing C/ebpαDN. Targeted expression of Bmi1 in the SL-HSPCs recapitulates nearly all aberrant phenotypes induced by C/ebpαDN, whereas knockdown of bmi1 largely rescues these abnormalities. The results indicate that Bmi1 acts immediately downstream of C/ebpαDN to regulate the survival and self-renewal of HSPCs and contribute to the erythropoietic dysplasia.
胚胎发生时期的原始造血干/祖细胞(HSPCs)被认为是寿命短(SL)且自我更新能力有限的。这些寿命短的 HSPCs 一旦在活体动物体内被重新编程为“长寿”,其命运和后果仍然未知。在这里,我们表明在斑马鱼胚胎发生过程中,在原始 SL-HSPCs 中靶向表达显性负性 C/ebpα(C/ebpαDN)可以延长其寿命,使它们能够存活到后期发育阶段,定植于确定性造血部位,在那里它们经历增殖扩张,随后由于循环充血而出现红细胞生成异常和胚胎致死。从机制上讲,C/ebpαDN 结合到 bmi1 基因启动子区域的保守 C/EBP 结合基序,与在表达 C/ebpαDN 的转基因胚胎中 bmi1 转录的特异性诱导相关。在 SL-HSPCs 中靶向表达 Bmi1 几乎 recapitulates 由 C/ebpαDN 诱导的所有异常表型,而 bmi1 的敲低则在很大程度上挽救了这些异常。结果表明,Bmi1 作为 C/ebpαDN 的下游分子,直接调节 HSPCs 的存活和自我更新,并有助于红细胞生成异常。