State Key Laboratory of Membrane Biology, Institute of Zoology, Institute for Stem Cell and Regeneration, Chinese Academy of Sciences, Beijing 100101, China.
University of Chinese Academy of Science, Beijing 100049, China.
Development. 2023 Oct 15;150(20). doi: 10.1242/dev.201690. Epub 2023 Jun 15.
The crosstalk between hematopoietic lineages is important for developmental hematopoiesis. However, the role of primitive red blood cells (RBCs) in the formation of definitive hematopoietic stem and progenitor cells (HSPCs) is largely unknown. Primitive RBC deficiencies in mammals always lead to early embryonic lethality, but zebrafish lines with RBC deficiencies can survive to larval stage. By taking advantage of a zebrafish model, we find that the survival of nascent HSPCs is impaired in alas2- or alad-deficient embryos with aberrant heme biosynthesis in RBCs. Heme-deficient primitive RBCs induce ferroptosis of HSPCs through the disruption of iron homeostasis. Mechanistically, heme-deficient primitive RBCs cause blood iron-overload via Slc40a1, and an HSPC iron sensor, Tfr1b, mediates excessive iron absorption. Thus, iron-induced oxidative stress stimulates the lipid peroxidation, which directly leads to HSPC ferroptosis. Anti-ferroptotic treatments efficiently reverse HSPC defects in alas2 or alad mutants. HSPC transplantation assay reveals that the attenuated erythroid reconstitution efficiency may result from the ferroptosis of erythrocyte-biased HSPCs. Together, these results illustrate that heme-deficient primitive RBCs are detrimental to HSPC production and may provide potential implications for iron dysregulation-induced hematological malignancies.
造血谱系之间的串扰对于发育中的造血至关重要。然而,原始红细胞(RBC)在形成确定性造血干细胞和祖细胞(HSPC)中的作用在很大程度上是未知的。哺乳动物中原始 RBC 的缺乏总是导致早期胚胎致死,但具有 RBC 缺乏的斑马鱼品系可以存活到幼虫阶段。利用斑马鱼模型,我们发现,在 RBC 中海因生物合成异常的 alas2 或 alad 缺陷胚胎中,新生 HSPC 的存活受损。缺乏海因的原始 RBC 通过破坏铁稳态诱导 HSPC 的铁死亡。在机制上,缺乏海因的原始 RBC 通过 Slc40a1 导致血液铁过载,并且 HSPC 铁传感器 Tfr1b 介导过量铁吸收。因此,铁诱导的氧化应激刺激脂质过氧化,这直接导致 HSPC 铁死亡。抗铁死亡治疗可有效逆转 alas2 或 alad 突变体中的 HSPC 缺陷。HSPC 移植实验表明,减弱的红细胞再生效率可能是由于红细胞偏向性 HSPC 的铁死亡。总之,这些结果表明,缺乏海因的原始 RBC 不利于 HSPC 的产生,并可能为铁失调诱导的血液恶性肿瘤提供潜在的影响。