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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Wnt3a deficiency irreversibly impairs hematopoietic stem cell self-renewal and leads to defects in progenitor cell differentiation.
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Wnt3a deficiency irreversibly impairs hematopoietic stem cell self-renewal and leads to defects in progenitor cell differentiation.

机译:Wnt3a缺乏不可逆地损害造血干细胞的自我更新,并导致祖细胞分化的缺陷。

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摘要

Canonical Wnt signaling has been implicated in various aspects of hematopoiesis. Its role is controversial due to different outcomes between various inducible Wnt-signaling loss-of-function models and also compared with gain-of-function systems. We therefore studied a mouse deficient for a Wnt gene that seemed to play a nonredundant role in hematopoiesis. Mice lacking Wnt3a die prenatally around embryonic day (E) 12.5, allowing fetal hematopoiesis to be studied using in vitro assays and transplantation into irradiated recipient mice. Here we show that Wnt3a deficiency leads to a reduction in the numbers of hematopoietic stem cells (HSCs) and progenitor cells in the fetal liver (FL) and to severely reduced reconstitution capacity as measured in secondary transplantation assays. This deficiency is irreversible and cannot be restored by transplantation into Wnt3a competent mice. The impaired long-term repopulation capacity of Wnt3a(-/-) HSCs could not be explained by altered cell cycle or survival of primitive progenitors. Moreover, Wnt3a deficiency affected myeloid but not B-lymphoid development at the progenitor level, and affected immature thymocyte differentiation. Our results show that Wnt3a signaling not only provides proliferative stimuli, such as for immature thymocytes, but also regulates cell fate decisions of HSC during hematopoiesis.
机译:典型的Wnt信号传导已涉及造血的各个方面。由于各种可诱导的Wnt信号功能丧失模型之间的结果不同,并且与功能获得系统相比,其作用也存在争议。因此,我们研究了缺乏Wnt基因的小鼠,该基因似乎在造血过程中起着非冗余的作用。缺乏Wnt3a的小鼠在胚胎出生第(E)12.5天左右死亡,从而允许使用体外测定方法研究胎儿的造血功能并将其移植到接受辐照的小鼠体内。在这里,我们显示Wnt3a缺乏症导致胎儿肝脏(FL)中造血干细胞(HSCs)和祖细胞的数量减少,并严重降低了二次移植检测中的重构能力。这种缺陷是不可逆的,不能通过移植到Wnt3a感受态小鼠中恢复。 Wnt3a(-/-)HSCs的长期再繁殖能力受损不能通过改变细胞周期或原始祖细胞的存活来解释。此外,Wnt3a缺乏症在祖细胞水平上影响骨髓,但不影响B淋巴的发育,并影响未成熟的胸腺细胞分化。我们的结果表明,Wnt3a信号传导不仅提供增殖刺激,例如针对未成熟的胸腺细胞,而且还调节造血过程中HSC的细胞命运决定。

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