Department of Cell, Developmental, and Regenerative Biology, Mount Sinai School of Medicine, New York, NY, United States.
Black Family Stem Cell Institute, New York, NY, United States.
Elife. 2021 Feb 11;10:e61070. doi: 10.7554/eLife.61070.
Erythroblastic islands are a specialized niche that contain a central macrophage surrounded by erythroid cells at various stages of maturation. However, identifying the precise genetic and transcriptional control mechanisms in the island macrophage remains difficult due to macrophage heterogeneity. Using unbiased global sequencing and directed genetic approaches focused on early mammalian development, we find that fetal liver macrophages exhibit a unique expression signature that differentiates them from erythroid and adult macrophage cells. The importance of erythroid Krüppel-like factor (EKLF)/KLF1 in this identity is shown by expression analyses in EKLF-/- and in EKLF-marked macrophage cells. Single-cell sequence analysis simplifies heterogeneity and identifies clusters of genes important for EKLF-dependent macrophage function and novel cell surface biomarkers. Remarkably, this singular set of macrophage island cells appears transiently during embryogenesis. Together, these studies provide a detailed perspective on the importance of EKLF in the establishment of the dynamic gene expression network within erythroblastic islands in the developing embryo and provide the means for their efficient isolation.
成红细胞岛是一个特殊的龛位,其中包含一个中央巨噬细胞,周围是处于不同成熟阶段的红细胞。然而,由于巨噬细胞的异质性,鉴定岛状巨噬细胞中确切的遗传和转录控制机制仍然很困难。我们使用无偏的全局测序和针对早期哺乳动物发育的定向遗传方法,发现胎肝巨噬细胞表现出独特的表达特征,使其与红细胞和成年巨噬细胞区分开来。在 EKLF-/-和 EKLF 标记的巨噬细胞中进行表达分析,表明红细胞 Krüppel 样因子 (EKLF)/KLF1 在这种特性中很重要。单细胞序列分析简化了异质性,并确定了与 EKLF 依赖性巨噬细胞功能和新型细胞表面生物标志物相关的重要基因簇。值得注意的是,这种独特的巨噬细胞岛细胞群在胚胎发生过程中似乎是短暂存在的。总之,这些研究提供了一个详细的视角,说明了 EKLF 在胚胎发育过程中成红细胞岛内动态基因表达网络的建立中的重要性,并为其有效的分离提供了手段。