MRC Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Headington, Oxford, OX3 9DS, UK.
Development. 2013 Jun;140(12):2632-42. doi: 10.1242/dev.090829. Epub 2013 May 1.
The first haematopoietic stem cells share a common origin with the dorsal aorta and derive from putative adult haemangioblasts in the dorsal lateral plate (DLP) mesoderm. Here we show that the transcription factor (TF) stem cell leukaemia (Scl/Tal1) is crucial for development of these adult haemangioblasts in Xenopus and establish the regulatory cascade controlling its expression. We show that VEGFA produced in the somites is required to initiate adult haemangioblast programming in the adjacent DLP by establishing endogenous VEGFA signalling. This response depends on expression of the VEGF receptor Flk1, driven by Fli1 and Gata2. Scl activation requires synergy between this VEGFA-controlled pathway and a VEGFA-independent pathway controlled by Fli1, Gata2 and Etv2/Etsrp/ER71, which also drives expression of the Scl partner Lmo2. Thus, the two ETS factors Fli1 and Etv6, which drives the VEGFA expression in both somites and the DLP, sit at the top of the adult haemangioblast gene regulatory network (GRN). Furthermore, Gata2 is initially activated by Fli1 but later maintained by another ETS factor, Etv2. We also establish that Flk1 and Etv2 act independently in the two pathways to Scl activation. Thus, detailed temporal, epistatic measurements of key TFs and VEGFA plus its receptor have enabled us to build a Xenopus adult haemangioblast GRN.
第一个造血干细胞与背主动脉具有共同的起源,并且来源于背外侧盘中的假定成体血管母细胞。在这里,我们表明转录因子(TF)干细胞白血病(Scl/Tal1)对于在非洲爪蟾中这些成体血管母细胞的发育至关重要,并建立了控制其表达的调控级联。我们表明,在相邻的 DLP 中,由 somites 产生的 VEGFA 通过建立内源性 VEGFA 信号来启动成体血管母细胞编程。该反应取决于由 Fli1 和 Gata2 驱动的 VEGF 受体 Flk1 的表达。Scl 的激活需要这种 VEGFA 控制的途径与由 Fli1、Gata2 和 Etv2/Etsrp/ER71 控制的非 VEGFA 独立途径之间的协同作用,该途径也驱动 Scl 伴侣 Lmo2 的表达。因此,两种 ETS 因子 Fli1 和 Etv6,它们驱动 somites 和 DLP 中 VEGFA 的表达,位于成体血管母细胞基因调控网络(GRN)的顶部。此外,Gata2 最初被 Fli1 激活,但后来被另一个 ETS 因子 Etv2 维持。我们还确定 Flk1 和 Etv2 在 Scl 激活的两条途径中独立发挥作用。因此,对关键 TF 和 VEGFA 及其受体的详细时间、上位测量使我们能够构建非洲爪蟾成体血管母细胞 GRN。