Department of Genetics and Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth, Hanover, NH;
Blood. 2013 Sep 19;122(12):2039-46. doi: 10.1182/blood-2013-03-486647. Epub 2013 Aug 1.
Mixed Lineage Leukemia (MLL1) translocations encode fusion proteins retaining the N terminus of MLL1, which interacts with the tumor suppressor, menin. This interaction is essential for leukemogenesis and thus is a promising drug target. However, wild-type MLL1 plays a critical role in sustaining hematopoietic stem cells (HSCs); therefore, disruption of an essential MLL1 cofactor would be expected to obliterate normal hematopoiesis. Here we show that rather than working together as a complex, menin and MLL1 regulate distinct pathways during normal hematopoiesis, particularly in HSCs and B cells. We demonstrate the lack of genetic interaction between menin and MLL1 in steady-state or regenerative hematopoiesis and in B-cell differentiation despite the fact that MLL1 is critical for these processes. In B cells, menin- or MLL1-regulated genes can be classified into 3 categories: (1) a relatively small group of coregulated genes including previously described targets Hoxa9 and Meis1 but also Mecom and Eya1, and much larger groups of (2) exclusively menin-regulated and (3) exclusively MLL1-regulated genes. Our results highlight the large degree of independence of these 2 proteins and demonstrate that menin is not a requisite cofactor for MLL1 during normal hematopoiesis. Furthermore, our data support the development of menin-MLL1-disrupting drugs as safe and selective leukemia targeting agents.
混合谱系白血病(MLL1)易位编码保留 MLL1 N 端的融合蛋白,该 N 端与肿瘤抑制因子 menin 相互作用。这种相互作用对于白血病的发生至关重要,因此是一个有前途的药物靶点。然而,野生型 MLL1 在维持造血干细胞(HSCs)中起着至关重要的作用;因此,预计破坏必需的 MLL1 辅助因子将消除正常的造血作用。在这里,我们表明,menin 和 MLL1 在正常造血过程中,特别是在 HSCs 和 B 细胞中,并没有像一个复合物那样共同起作用,而是调节不同的途径。我们证明了 menin 和 MLL1 在稳态或再生造血以及 B 细胞分化中缺乏遗传相互作用,尽管 MLL1 对这些过程至关重要。在 B 细胞中,menin 或 MLL1 调节的基因可以分为 3 类:(1)一组相对较小的共同调节基因,包括先前描述的靶基因 Hoxa9 和 Meis1,但也包括 Mecom 和 Eya1,以及更大的(2)仅由 menin 调节的和(3)仅由 MLL1 调节的基因。我们的结果突出了这两种蛋白质的高度独立性,并表明在正常造血过程中,menin 不是 MLL1 的必需辅助因子。此外,我们的数据支持开发 menin-MLL1 破坏药物作为安全且选择性的白血病靶向药物。