Stem Cell Aging Group, Spanish National Cardiovascular Research Center, Madrid, Spain.
Cell Cycle. 2012 Jan 1;11(1):65-78. doi: 10.4161/cc.11.1.18097.
Preservation of hematopoietic hierarchy requires a constant and reciprocal interplay between chromatin-specific epigenetic regulators and lineage-modifying transcription factors. The polycomb member Bmi1 is a key factor in hematopoietic stem cell (HSC) maintenance, but its specific physiological role in subsequent hematopoietic lineage-specific commitments is unclear. Here, we generated conditional Bmi1 knockout (Bmi1-KO) mice. Selective ablation of Bmi1 in the hematopoietic system induced extensive upregulation of Ikaros and concomitant Ikaros-dependent lymphoid-lineage transcriptional priming, which is marked by their loss of H2A ubiquitination and increased H3K4 trimethylation in Bmi1-KO long-term HSCs (LT-HSCs). Removal of Ikaros in Bmi1-null LT-HSCs significantly diminished the hematopoietic defects seen in conditional Bmi1-KO mice. These alterations resulted in recovering the Bmi1-KO exhausted quiescent stem-cell pool, whereas the block in Bmi1-KO lymphoid-progenitor differentiation was rescued, allowing the development of mature lymphoid cells. Together, our results indicate that Ikaros is a critical Bmi1 target in vivo that prevents premature lineage specification of HSCs.
造血层级的维持需要染色质特异性表观遗传调节剂和谱系修饰转录因子之间的持续相互作用。多梳成员 Bmi1 是造血干细胞 (HSC) 维持的关键因素,但它在随后的造血谱系特异性承诺中的具体生理作用尚不清楚。在这里,我们生成了条件性 Bmi1 敲除 (Bmi1-KO) 小鼠。造血系统中 Bmi1 的选择性缺失诱导了 Ikaros 的广泛上调,并伴有 Ikaros 依赖性淋巴谱系转录起始,其特征在于它们失去了 H2A 泛素化和 Bmi1-KO 长期 HSCs (LT-HSCs) 中 H3K4 三甲基化的增加。在 Bmi1 缺失的 LT-HSCs 中去除 Ikaros 显著减少了条件性 Bmi1-KO 小鼠中观察到的造血缺陷。这些改变导致恢复了 Bmi1-KO 耗尽的静止干细胞池,而 Bmi1-KO 淋巴祖细胞分化的阻断得到了挽救,允许成熟的淋巴细胞发育。总之,我们的结果表明,Ikaros 是体内 Bmi1 的一个关键靶标,可防止 HSCs 的过早谱系特化。