Department of Life Sciences, College of Natural Science, Hanyang University, Seoul 04763, Korea.
Research Institute for Convergence of Basic Sciences, Hanyang University, Seoul 04763, Korea.
Mol Cells. 2017 Dec 31;40(12):976-985. doi: 10.14348/molcells.2017.0287. Epub 2017 Dec 14.
Iron is an essential divalent ion for aerobic life. Life has evolved to maintain iron homeostasis for normal cellular and physiological functions and therefore imbalances in iron levels exert a wide range of consequences. Responses to iron dysregulation in blood development, however, remain elusive. Here, we found that iron homeostasis is critical for differentiation of Drosophila blood cells in the larval hematopoietic organ, called the lymph gland. Supplementation of an iron chelator, bathophenanthroline disulfate (BPS) results in an excessive differentiation of the crystal cell in the lymph gland. This phenotype is recapitulated by loss of Fer1HCH in the intestine, indicating that reduced levels of systemic iron enhances crystal cell differentiation. Detailed analysis of Fer1HCH-tagged-GFP revealed that Fer1HCH is also expressed in the hematopoietic systems. Lastly, blocking Fer1HCH expression in the mature blood cells showed marked increase in the blood differentiation of both crystal cells and plasmatocytes. Thus, our work suggests a relevance of systemic and local iron homeostasis in blood differentiation, prompting further investigation of molecular mechanisms underlying iron regulation and cell fate determination in the hematopoietic system.
铁是需氧生命所必需的二价离子。生命已经进化到维持铁的动态平衡,以实现正常的细胞和生理功能,因此铁水平的失衡会产生广泛的后果。然而,血液发育中对铁失调的反应仍然难以捉摸。在这里,我们发现铁稳态对于果蝇幼虫造血器官(称为淋巴腺)中血细胞的分化至关重要。铁螯合剂浴苯并菲二磺酸钠(BPS)的补充会导致淋巴腺中晶体细胞的过度分化。这种表型可以通过在肠道中缺失 Fer1HCH 来重现,表明系统铁水平的降低会增强晶体细胞的分化。对 Fer1HCH 标记 GFP 的详细分析表明,Fer1HCH 也在造血系统中表达。最后,在成熟血细胞中阻断 Fer1HCH 的表达会导致晶体细胞和浆细胞的血液分化明显增加。因此,我们的工作表明系统和局部铁动态平衡与血液分化有关,这促使我们进一步研究造血系统中铁调节和细胞命运决定的分子机制。