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斑马鱼ELL相关因子Eaf1/2通过调节gata1a表达和WNT信号通路来调节红细胞生成,以促进缺氧耐受性。

Zebrafish ELL-associated factors Eaf1/2 modulate erythropoiesis via regulating gata1a expression and WNT signaling to facilitate hypoxia tolerance.

作者信息

Liu WenYe, Lin ShuHui, Li LingYa, Tai ZhiPeng, Liu Jing-Xia

机构信息

College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, 430070, Wuhan, China.

出版信息

Cell Regen. 2023 Apr 1;12(1):10. doi: 10.1186/s13619-022-00154-3.

Abstract

EAF1 and EAF2, the eleven-nineteen lysine-rich leukemia (ELL)-associated factors which can assemble to the super elongation complex (AFF1/4, AF9/ENL, ELL, and P-TEFb), are reported to participate in RNA polymerase II to actively regulate a variety of biological processes, including leukemia and embryogenesis, but whether and how EAF1/2 function in hematopoietic system related hypoxia tolerance during embryogenesis remains unclear. Here, we unveiled that deletion of EAF1/2 (eaf1 and eaf2) caused reduction in hypoxia tolerance in zebrafish, leading to reduced erythropoiesis during hematopoietic processes. Meanwhile, eaf1 and eaf2 mutants showed significant reduction in the expression of key transcriptional regulators scl, lmo2, and gata1a in erythropoiesis at both 24 h post fertilization (hpf) and 72 hpf, with gata1a downregulated while scl and lmo2 upregulated at 14 hpf. Mechanistically, eaf1 and eaf2 mutants exhibited significant changes in the expression of epigenetic modified histones, with a significant increase in the binding enrichment of modified histone H3K27me3 in gata1a promoter rather than scl and lmo2 promoters. Additionally, eaf1 and eaf2 mutants exhibited a dynamic expression of canonical WNT/β-catenin signaling during erythropoiesis, with significant reduction in p-β-Catenin level and in the binding enrichment of both scl and lmo2 promoters with the WNT transcriptional factor TCF4 at 24 hpf. These findings demonstrate an important role of Eaf1/2 in erythropoiesis in zebrafish and may have shed some light on regeneration medicine for anemia and related diseases and on molecular basis for fish economic or productive traits, such as growth, disease resistance, hypoxia tolerance, and so on.

摘要

EAF1和EAF2是与富含11-19位赖氨酸的白血病(ELL)相关的因子,它们可以组装成超级延伸复合物(AFF1/4、AF9/ENL、ELL和P-TEFb),据报道可参与RNA聚合酶II,积极调节包括白血病和胚胎发生在内的多种生物学过程,但EAF1/2在胚胎发生过程中造血系统相关的缺氧耐受性中是否发挥作用以及如何发挥作用仍不清楚。在此,我们发现敲除EAF1/2(eaf1和eaf2)会导致斑马鱼缺氧耐受性降低,从而导致造血过程中红细胞生成减少。同时,eaf1和eaf2突变体在受精后24小时(hpf)和72 hpf时红细胞生成关键转录调节因子scl、lmo2和gata1a的表达均显著降低,在14 hpf时gata1a下调而scl和lmo2上调。从机制上讲,eaf1和eaf2突变体在表观遗传修饰组蛋白的表达上表现出显著变化,gata1a启动子而非scl和lmo2启动子中修饰组蛋白H3K27me3的结合富集显著增加。此外,eaf1和eaf2突变体在红细胞生成过程中表现出经典WNT/β-连环蛋白信号的动态表达,在24 hpf时p-β-连环蛋白水平以及scl和lmo2启动子与WNT转录因子TCF4的结合富集均显著降低。这些发现证明了Eaf1/2在斑马鱼红细胞生成中的重要作用,可能为贫血及相关疾病的再生医学以及鱼类经济或生产性状(如生长、抗病性、缺氧耐受性等)的分子基础提供了一些启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d97/10066051/507965492c7d/13619_2022_154_Fig1_HTML.jpg

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