Leukaemia and Stem Cell Biology Group, School of Cancer and Pharmaceutical Sciences, King's College London, London, United Kingdom.
Department of Haematological Medicine, King's College Hospital, London, United Kingdom.
Blood. 2024 Apr 18;143(16):1586-1598. doi: 10.1182/blood.2023022082.
Maintenance of quiescence and DNA replication dynamics are 2 paradoxical requirements for the distinct states of dormant and active hematopoietic stem cells (HSCs), which are required to preserve the stem cell reservoir and replenish the blood cell system in response to hematopoietic stress, respectively. Here, we show that key self-renewal factors, β-catenin or Hoxa9, largely dispensable for HSC integrity, in fact, have dual functions in maintaining quiescence and enabling efficient DNA replication fork dynamics to preserve the functionality of hematopoietic stem and progenitor cells (HSPCs). Although β-catenin or Hoxa9 single knockout (KO) exhibited mostly normal hematopoiesis, their coinactivation led to severe hematopoietic defects stemmed from aberrant cell cycle, DNA replication, and damage in HSPCs. Mechanistically, β-catenin and Hoxa9 function in a compensatory manner to sustain key transcriptional programs that converge on the pivotal downstream target and epigenetic modifying enzyme, Prmt1, which protects the quiescent state and ensures an adequate supply of DNA replication and repair factors to maintain robust replication fork dynamics. Inactivation of Prmt1 phenocopied both cellular and molecular phenotypes of β-catenin/Hoxa9 combined KO, which at the same time could also be partially rescued by Prmt1 expression. The discovery of the highly resilient β-catenin/Hoxa9/Prmt1 axis in protecting both quiescence and DNA replication dynamics essential for HSCs at different key states provides not only novel mechanistic insights into their intricate regulation but also a potential tractable target for therapeutic intervention.
静止和 DNA 复制动力学的维持是休眠和活跃造血干细胞 (HSC) 两种截然不同状态的两个矛盾需求,分别需要保持干细胞库并响应造血应激来补充血细胞系统。在这里,我们表明,关键的自我更新因子 β-连环蛋白或 Hoxa9 对于 HSC 的完整性虽然不是必需的,但实际上具有维持静止和实现有效 DNA 复制叉动力学的双重功能,以维持造血干细胞和祖细胞 (HSPC) 的功能。尽管 β-连环蛋白或 Hoxa9 单敲除 (KO) 表现出大多正常的造血作用,但它们的共失活导致严重的造血缺陷,源于 HSPC 中的异常细胞周期、DNA 复制和损伤。从机制上讲,β-连环蛋白和 Hoxa9 以补偿的方式发挥作用,维持关键转录程序,这些程序集中在关键下游靶标和表观遗传修饰酶 Prmt1 上,Prmt1 保护静止状态并确保充足的 DNA 复制和修复因子供应以维持强大的复制叉动力学。Prmt1 的失活模拟了β-连环蛋白/Hoxa9 联合 KO 的细胞和分子表型,同时 Prmt1 的表达也可以部分挽救这种表型。在不同关键状态下,高度有弹性的 β-连环蛋白/Hoxa9/Prmt1 轴在保护静止和 DNA 复制动力学方面为 HSCs 提供了新的机制见解,不仅为其复杂的调控提供了新的机制见解,也为治疗干预提供了一个潜在的可行靶点。