Istituto di Ricerca Genetica e Biomedica del Consiglio Nazionale delle Ricerche (IRGB-CNR), Cittadella Universitaria, SS 554 bivio per Sestu Km 4,5, 09042, Monserrato, Cagliari, Italy.
Dipartimento di Scienze Biomediche. Facoltà di Medicina e Chirurgia, Cittadella Universitaria, SS 554 bivio per Sestu Km 4,5, 09042, Monserrato, Cagliari, Italy.
Cell Death Differ. 2018 Mar;25(3):589-599. doi: 10.1038/s41418-017-0003-5. Epub 2017 Dec 11.
A key regulatory gene in definitive erythropoiesis is the transcription factor Krüppel-like factor 1 (Klf1). Klf1 null mice die in utero by day 15.5 (E15.5) due to impaired definitive erythropoiesis and severe anemia. Definitive erythropoiesis takes place in erythroblastic islands in mammals. Erythroblastic islands are formed by a central macrophage (Central Macrophage of Erythroblastic Island, CMEI) surrounded by maturating erythroblasts. Interferon-β (IFN-β) is activated in the fetal liver's CMEI of Klf1 null mice. The inhibitory effect of IFN-β on erythropoiesis is known and, therefore, we speculated that IFN-β could have contributed to the impairment of definitive erythropoiesis in Klf1 knockout (KO) mice fetal liver. To validate this hypothesis, in this work we determined whether the inactivation of type I interferon receptor (Ifnar1) would ameliorate the phenotype of Klf1 KO mice by improving the lethal anemia. Our results show a prolonged survival of Klf1/Ifnar1 double KO embryos, with an improvement of the definitive erythropoiesis and erythroblast enucleation, together with a longer lifespan of CMEI in the fetal liver and also a restoration of the apoptotic program. Our data indicate that the cytotoxic effect of IFN-β activation in CMEI contribute to the impairment of definitive erythropoiesis associated with Klf1 deprivation.
在确定性红细胞生成中,关键调节基因是转录因子 Krüppel 样因子 1(Klf1)。Klf1 缺失小鼠在胚胎 15.5 天(E15.5)因确定性红细胞生成受损和严重贫血而死于子宫内。哺乳动物中的确定性红细胞生成发生在成红细胞岛内。成红细胞岛由中央巨噬细胞(成红细胞岛中央巨噬细胞,CMEI)和成熟的红细胞组成。干扰素-β(IFN-β)在 Klf1 缺失小鼠的胎肝 CMEI 中被激活。IFN-β 对红细胞生成的抑制作用是已知的,因此,我们推测 IFN-β可能导致 Klf1 敲除(KO)小鼠胎肝中确定性红细胞生成受损。为了验证这一假设,在这项工作中,我们确定了是否失活 I 型干扰素受体(Ifnar1)可以通过改善致死性贫血来改善 Klf1 KO 小鼠的表型。我们的结果显示,Klf1/Ifnar1 双 KO 胚胎的存活率延长,确定性红细胞生成和红细胞去核得到改善,胎肝中 CMEI 的寿命延长,凋亡程序也得到恢复。我们的数据表明,IFN-β在 CMEI 中的细胞毒性作用导致与 Klf1 缺乏相关的确定性红细胞生成受损。