Rizo Aleksandra, Dontje Bert, Vellenga Edo, de Haan Gerald, Schuringa Jan Jacob
Department of Cell Biology, Section Stem Cell Biology, University Medical Center, University of Groningen, Deusinglaan 1, Groningen, The Netherlands.
Blood. 2008 Mar 1;111(5):2621-30. doi: 10.1182/blood-2007-08-106666. Epub 2007 Dec 21.
The polycomb group (PcG) gene BMI1 has been identified as one of the key epigenetic regulators of cell fates during different stages of development in multiple murine tissues. In a clinically relevant model, we demonstrate that enforced expression of BMI1 in cord blood CD34(+) cells results in long-term maintenance and self-renewal of human hematopoietic stem and progenitor cells. Long-term culture-initiating cell frequencies were increased upon stable expression of BMI1 and these cells engrafted more efficiently in NOD-SCID mice. Week 5 cobblestone area-forming cells (CAFCs) were replated to give rise to secondary CAFCs. Serial transplantation studies in NOD-SCID mice revealed that secondary engraftment was only achieved with cells overexpressing BMI1. Importantly, BMI1-transduced cells proliferated in stroma-free cytokine-dependent cultures for more than 20 weeks, while a stable population of approximately 1% to 5% of CD34(+) cells was preserved that retained colony-forming capacity. Whereas control cells lost most of their NOD-SCID engraftment potential after 10 days of ex vivo culturing in absence of stroma, NOD-SCID multilineage engraftment was retained by overexpression of BMI1. Thus, our data indicate that self-renewal of human hematopoietic stem cells is enhanced by BMI1, and we classify BMI1 as an intrinsic regulator of human stem/progenitor cell self-renewal.
多梳蛋白家族(PcG)基因BMI1已被确定为多种小鼠组织在不同发育阶段细胞命运的关键表观遗传调节因子之一。在一个临床相关模型中,我们证明在脐血CD34(+)细胞中强制表达BMI1可导致人类造血干细胞和祖细胞的长期维持和自我更新。BMI1稳定表达后,长期培养起始细胞频率增加,并且这些细胞在NOD-SCID小鼠中更有效地植入。第5周的鹅卵石区域形成细胞(CAFCs)被重新接种以产生第二代CAFCs。在NOD-SCID小鼠中的连续移植研究表明,只有过表达BMI1的细胞才能实现二次植入。重要的是,转导BMI1的细胞在无基质细胞因子依赖性培养中增殖超过20周,同时保留了约1%至5%的稳定CD34(+)细胞群体,这些细胞保留了集落形成能力。在无基质的体外培养10天后,对照细胞失去了大部分NOD-SCID植入潜力,而过表达BMI1则保留了NOD-SCID多谱系植入。因此,我们的数据表明BMI1增强了人类造血干细胞的自我更新,并且我们将BMI1归类为人类干/祖细胞自我更新的内在调节因子。