State Key Laboratory of Molecular Neuroscience, Center of Systems Biology and Human Health, Division of Life Science, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, P. R. China.
Development. 2012 Dec 1;139(23):4321-9. doi: 10.1242/dev.081869.
In vertebrates, establishment of the hematopoietic stem/progenitor cell (HSPC) pool involves mobilization of these cells in successive developmental hematopoietic niches. In zebrafish, HSPCs originate from the ventral wall of the dorsal aorta (VDA), the equivalent of the mammalian aorta-gonad-mesonephros (AGM). The HSPCs subsequently migrate to the caudal hematopoietic tissue (CHT) for transitory expansion and differentiation during the larval stage, and they finally colonize the kidney, where hematopoiesis takes place in adult fish. Here, we report the isolation and characterization of a zebrafish mutant, tango(hkz5), which shows defects of definitive hematopoiesis. In tango(hkz5) mutants, HSPCs initiate normally in the AGM and subsequently colonize the CHT. However, definitive hematopoiesis is not sustained in the CHT owing to accelerated apoptosis and diminished proliferation of HSPCs. Positional cloning reveals that tango(hkz5) encodes SUMO1-activating enzyme subunit 1 (Sae1). A chimera generation experiment and biochemistry analysis reveal that sae1 is cell-autonomously required for definitive hematopoiesis and that the tango(hkz5) mutation produces a truncated Sae1 protein (ΔSae1), resulting in systemic reduction of sumoylation. Our findings demonstrate that sae1 is essential for the maintenance of HSPCs during fetal hematopoiesis in zebrafish.
在脊椎动物中,造血干/祖细胞(HSPC)池的建立涉及这些细胞在连续发育的造血龛位中的动员。在斑马鱼中,HSPC 起源于背主动脉(VDA)的腹侧壁,相当于哺乳动物的主动脉-性腺-中肾(AGM)。随后,HSPC 迁移到尾造血组织(CHT),在幼虫期进行短暂的扩增和分化,最终定植于肾脏,在成年鱼中发生造血。在这里,我们报道了一种斑马鱼突变体 tango(hkz5)的分离和鉴定,该突变体表现出定型造血缺陷。在 tango(hkz5)突变体中,HSPC 在 AGM 中正常起始,随后定植于 CHT。然而,由于 HSPC 的凋亡加速和增殖减少,定型造血不能在 CHT 中持续。定位克隆表明 tango(hkz5)编码 SUMO1-激活酶亚单位 1(Sae1)。嵌合体生成实验和生化分析表明,sae1 在细胞自主水平上对定型造血是必需的,并且 tango(hkz5)突变产生截短的 Sae1 蛋白(ΔSae1),导致 sumoylation 的系统性减少。我们的研究结果表明,sae1 在斑马鱼胎儿造血过程中对 HSPC 的维持是必不可少的。