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Setd2 regulates quiescence and differentiation of adult hematopoietic stem cells by restricting RNA polymerase II elongation

机译: Setd2 通过限制RNA聚合酶II的延伸来调节成年造血干细胞的静止和分化

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SET domain containing 2 ( Setd2 ), encoding a histone methyltransferase, is associated with many hematopoietic diseases when mutated. By generating a novel exon 6 conditional knockout mouse model, we describe an essential role of Setd2 in maintaining the adult hematopoietic stem cells. Loss of Setd2 results in leukopenia, anemia, and increased platelets accompanied by hypocellularity, erythroid dysplasia, and mild fibrosis in bone marrow. Setd2 knockout mice show significantly decreased hematopoietic stem and progenitor cells except for erythroid progenitors. Setd2 knockout hematopoietic stem cells fail to establish long-term bone marrow reconstitution after transplantation because of the loss of quiescence, increased apoptosis, and reduced multiple-lineage terminal differentiation potential. Bioinformatic analysis revealed that the hematopoietic stem cells exit from quiescence and commit to differentiation, which lead to hematopoietic stem cell exhaustion. Mechanistically, we attribute an important Setd2 function in murine adult hematopoietic stem cells to the inhibition of the Nsd1/2/3 transcriptional complex, which recruits super elongation complex and controls RNA polymerase II elongation on a subset of target genes, including Myc . Our results reveal a critical role of Setd2 in regulating quiescence and differentiation of hematopoietic stem cells through restricting the NSDs/SEC mediated RNA polymerase II elongation.
机译:含有2(Setd2)的SET结构域,编码一个组蛋白甲基转移酶,在突变时与许多造血疾病有关。通过生成新型外显子6条件性基因敲除小鼠模型,我们描述了Setd2在维持成人造血干细胞中的重要作用。 Setd2的丢失会导致白细胞减少症,贫血和血小板增多,并伴有骨髓细胞增生,红系发育异常和轻度纤维化。 Setd2基因敲除小鼠显示除红系祖细胞外,造血干细胞和祖细胞明显减少。 Setd2基因敲除的造血干细胞在移植后无法建立长期的骨髓重建,因为它失去了静止性,增加了细胞凋亡,并降低了多系终末分化潜能。生物信息学分析显示,造血干细胞从静止状态退出并分化,导致造血干细胞衰竭。从机制上讲,我们将鼠成年造血干细胞中的重要Setd2功能归因于Nsd1 / 2/3转录复合物的抑制,该复合物募集了超级延伸复合物并控制了包括Myc在内的靶基因子集上的RNA聚合酶II延伸。我们的结果揭示了Setd2在通过限制NSDs / SEC介导的RNA聚合酶II延长来调节造血干细胞的静止和分化中的关键作用。

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