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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A blood flow-dependent klf2a-NO signaling cascade is required for stabilization of hematopoietic stem cell programming in zebrafish embryos.
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A blood flow-dependent klf2a-NO signaling cascade is required for stabilization of hematopoietic stem cell programming in zebrafish embryos.

机译:依赖于血流的klf2a-NO信号级联对于稳定斑马鱼胚胎中的造血干细胞编程是必需的。

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摘要

Blood flow has long been thought to be important for vessel development and function, but its role in HSC development is not yet fully understood. Here, we take advantage of zebrafish embryos with circulation defects that retain relatively normal early development to illustrate the combinatorial roles of genetic and hemodynamic forces in HSC development. We show that blood flow is not required for initiation of HSC gene expression, but instead is indispensable for its maintenance. Knockdown of klf2a mimics the silent heart (sih/tnnt2a) phenotype while overexpression of klf2a in tnnt2a morphant embryos can rescue HSC defects, suggesting that klf2a is a downstream mediator of blood flow. Furthermore, the expression of NO synthase (nos) was reduced in klf2a knockdown embryos, and ChIP analysis showed that endogenous Klf2a is bound to the promoters of nos genes in vivo, indicating direct gene regulation. Finally, administration of the NO agonist S-nitroso N-acetylpenicillamine (SNAP) can restore HSC development in tnnt2a and klf2a morphants, suggesting that NO signaling is downstream of Klf2a which is induced by hemodynamic forces. Taken together, we have demonstrated that blood flow is essential for HSC development and is mediated by a klf2a-NO signaling cascade in zebrafish.
机译:长期以来,人们一直认为血流对血管的发育和功能很重要,但是其在HSC发育中的作用尚未得到充分了解。在这里,我们利用具有循环缺陷的斑马鱼胚胎保留了相对正常的早期发育,以说明遗传和血液动力在HSC发育中的组合作用。我们显示,HSC基因表达的启动并不需要血流,而是对其维持必不可少的。敲低klf2a可以模拟沉默的心脏(sih / tnnt2a)表型,而tnnt2a morphant胚胎中klf2a的过表达可以挽救HSC缺陷,这表明klf2a是血流的下游介质。此外,在klf2a敲低的胚胎中NO合酶(nos)的表达降低,并且ChIP分析表明,内源性Klf2a在体内与nos基因的启动子结合,表明直接的基因调控。最后,NO激动剂S-亚硝基N-乙酰青霉胺(SNAP)的使用可以恢复tnnt2a和klf2a morphant中的HSC发育,表明NO信号在Klf2a的下游,这是由血流动力学力诱导的。两者合计,我们已经证明,血流对于HSC的发展至关重要,并由斑马鱼中的klf2a-NO信号级联介导。

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