Centro Nacional de Investigaciones Cardiovasculares, Madrid, Spain.
Stem Cell Program, Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH.
Blood. 2023 Feb 9;141(6):592-608. doi: 10.1182/blood.2022016832.
Hematopoietic stem cells (HSCs) balance self-renewal and differentiation to maintain hematopoietic fitness throughout life. In steady-state conditions, HSC exhaustion is prevented by the maintenance of most HSCs in a quiescent state, with cells entering the cell cycle only occasionally. HSC quiescence is regulated by retinoid and fatty-acid ligands of transcriptional factors of the nuclear retinoid X receptor (RXR) family. Herein, we show that dual deficiency for hematopoietic RXRα and RXRβ induces HSC exhaustion, myeloid cell/megakaryocyte differentiation, and myeloproliferative-like disease. RXRα and RXRβ maintain HSC quiescence, survival, and chromatin compaction; moreover, transcriptome changes in RXRα;RXRβ-deficient HSCs include premature acquisition of an aging-like HSC signature, MYC pathway upregulation, and RNA intron retention. Fitness loss and associated RNA transcriptome and splicing alterations in RXRα;RXRβ-deficient HSCs are prevented by Myc haploinsufficiency. Our study reveals the critical importance of RXRs for the maintenance of HSC fitness and their protection from premature aging.
造血干细胞 (HSCs) 通过自我更新和分化来维持造血功能,以适应整个生命周期的需要。在稳态条件下,大多数 HSCs 处于静止状态,细胞仅偶尔进入细胞周期,从而防止 HSC 衰竭。HSC 静止状态受核视黄酸 X 受体 (RXR) 家族转录因子的视黄酸和脂肪酸配体的调节。在此,我们发现造血 RXRα 和 RXRβ 的双重缺失会导致 HSC 衰竭、髓系细胞/巨核细胞分化和骨髓增生样疾病。RXRα 和 RXRβ 维持 HSC 静止、存活和染色质紧缩;此外,RXRα;RXRβ 缺陷型 HSCs 中的转录组变化包括过早获得衰老样 HSC 特征、MYC 途径上调和 RNA 内含子保留。Myc 杂合不足可防止 RXRα;RXRβ 缺陷型 HSCs 的适应性丧失以及相关的 RNA 转录组和剪接改变。我们的研究揭示了 RXR 对于维持 HSC 适应性及其免受过早衰老的保护的重要性。