Department of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung, Taiwan.
Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung, Taiwan.
FASEB J. 2021 Oct;35(10):e21915. doi: 10.1096/fj.202001044RRR.
During development, erythroid cells are generated by two waves of hematopoiesis. In zebrafish, primitive erythropoiesis takes place in the intermediate cell mass region, and definitive erythropoiesis arises from the aorta-gonad mesonephros. TALE-homeoproteins Meis1 and Pbx1 function upstream of GATA1 to specify the erythroid lineage. Embryos lacking Meis1 or Pbx1 have weak gata1 expression and fail to produce primitive erythrocytes. Nevertheless, the underlying mechanism of how Meis1 and Pbx1 mediate gata1 transcription in erythrocytes remains unclear. Here we show that Hif1α acts downstream of Meis1 to mediate gata1 expression in zebrafish embryos. Inhibition of Meis1 expression resulted in suppression of hif1a expression and abrogated primitive erythropoiesis, while injection with in vitro-synthesized hif1α mRNA rescued gata1 transcription in Meis1 morphants and recovered their erythropoiesis. Ablation of Hif1α expression either by morpholino knockdown or Crispr-Cas9 knockout suppressed gata1 transcription and abrogated primitive erythropoiesis. Results of chromatin immunoprecipitation assays showed that Hif1α associates with hypoxia-response elements located in the 3'-flanking region of gata1 during development, suggesting that Hif1α regulates gata1 expression in vivo. Together, our results indicate that Meis1, Hif1α, and GATA1 indeed comprise a hierarchical regulatory network in which Hif1α acts downstream of Meis1 to activate gata1 transcription through direct interactions with its cis-acting elements in primitive erythrocytes.
在发育过程中,红系细胞由两波造血产生。在斑马鱼中,原始红细胞生成发生在中间细胞质量区域,而终末红细胞生成来自主动脉-性腺中肾。TALE 同源蛋白 Meis1 和 Pbx1 在 GATA1 上游发挥作用,以指定红细胞谱系。缺乏 Meis1 或 Pbx1 的胚胎具有较弱的 gata1 表达,并且无法产生原始红细胞。然而,Meis1 和 Pbx1 如何在红细胞中介导 gata1 转录的潜在机制仍不清楚。在这里,我们表明 Hif1α 作为 Meis1 的下游因子,在斑马鱼胚胎中介导 gata1 的表达。抑制 Meis1 的表达导致 hif1a 的表达受到抑制,并破坏原始红细胞生成,而体外合成的 hif1α mRNA 的注射挽救了 Meis1 形态发生体中的 gata1 转录,并恢复了它们的红细胞生成。通过 morpholino 敲低或 Crispr-Cas9 敲除抑制 Hif1α 的表达,抑制 gata1 的转录并破坏原始红细胞生成。染色质免疫沉淀分析的结果表明,Hif1α 在发育过程中与位于 gata1 3'侧翼区域的缺氧反应元件结合,表明 Hif1α 在体内调节 gata1 的表达。总之,我们的结果表明,Meis1、Hif1α 和 GATA1 确实构成了一个分层调节网络,其中 Hif1α 作为 Meis1 的下游因子,通过与原始红细胞中的顺式作用元件直接相互作用,激活 gata1 转录。