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PLZF 突变改变了小鼠造血干细胞的功能和细胞周期进程。

PLZF mutation alters mouse hematopoietic stem cell function and cell cycle progression.

机构信息

INSERM U1068, Centre de Recherche en Cancérologie de Marseille, Marseille, France; Institut Paoli-Calmettes, Marseille, France; Aix-Marseille University, Unité Mixte 105, Marseille, France; Centre national de la recherche scientifique, Unité mixte de recherche 7258, Centre de Recherche en Cancérologie de Marseille, Marseille, France; and.

INSERM U1068, Centre de Recherche en Cancérologie de Marseille, Marseille, France; Institut Paoli-Calmettes, Marseille, France; INSERM Centre d'Investigation Clinique en Biothérapie 1409, Marseille, France.

出版信息

Blood. 2016 Apr 14;127(15):1881-5. doi: 10.1182/blood-2015-09-666974. Epub 2016 Mar 3.

Abstract

Hematopoietic stem cells (HSCs) give rise to all blood populations due to their long-term self-renewal and multipotent differentiation capacities. Because they have to persist throughout an organism's life span, HSCs tightly regulate the balance between proliferation and quiescence. Here, we investigated the role of the transcription factor promyelocytic leukemia zinc finger (plzf) in HSC fate using the Zbtb16(lu/lu)mouse model, which harbors a natural spontaneous mutation that inactivates plzf. Regenerative stress revealed that Zbtb16(lu/lu)HSCs had a lineage-skewing potential from lymphopoiesis toward myelopoiesis, an increase in the long-term-HSC pool, and a decreased repopulation potential. Furthermore, oldplzf-mutant HSCs present an amplified aging phenotype, suggesting that plzf controls age-related pathway. We found that Zbtb16(lu/lu)HSCs harbor a transcriptional signature associated with a loss of stemness and cell cycle deregulation. Lastly, cell cycle analyses revealed an important role for plzf in the regulation of the G1-S transition of HSCs. Our study reveals a new role for plzf in regulating HSC function that is linked to cell cycle regulation, and positions plzf as a key player in controlling HSC homeostasis.

摘要

造血干细胞(HSCs)由于其长期的自我更新和多能分化能力,产生所有的血液群体。由于它们必须在整个生物体的寿命内持续存在,HSCs 必须严格调节增殖和静止之间的平衡。在这里,我们使用 Zbtb16(lu/lu) 小鼠模型研究了转录因子早幼粒细胞白血病锌指(plzf)在 HSC 命运中的作用,该模型携带一种自然发生的突变,使 plzf 失活。再生应激表明,Zbtb16(lu/lu)HSCs 具有从淋巴生成偏向髓系生成的谱系倾斜潜力,长期 HSC 池增加,再定植潜力降低。此外,年老的 plzf 突变 HSCs 表现出扩增的衰老表型,表明 plzf 控制与年龄相关的途径。我们发现,Zbtb16(lu/lu)HSCs 具有与干性丧失和细胞周期失调相关的转录特征。最后,细胞周期分析表明 plzf 在调节 HSC 的 G1-S 转换中起着重要作用。我们的研究揭示了 plzf 在调节与细胞周期调节相关的 HSC 功能方面的新作用,并将 plzf 定位为控制 HSC 动态平衡的关键因素。

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