Institute of Molecular Medicine, Feinstein Institutes for Medical Research, Manhasset, New York, USA.
HEMATIM, Universite de Picardie Jules Verne, Amiens, France.
Am J Hematol. 2024 Jan;99(1):99-112. doi: 10.1002/ajh.27145. Epub 2023 Nov 6.
Human erythropoiesis is a complex process leading to the production of 2.5 million red blood cells per second. Following commitment of hematopoietic stem cells to the erythroid lineage, this process can be divided into three distinct stages: erythroid progenitor differentiation, terminal erythropoiesis, and reticulocyte maturation. We recently resolved the heterogeneity of erythroid progenitors into four different subpopulations termed EP1-EP4. Here, we characterized the growth factor(s) responsiveness of these four progenitor populations in terms of proliferation and differentiation. Using mass spectrometry-based proteomics on sorted erythroid progenitors, we quantified the absolute expression of ~5500 proteins from EP1 to EP4. Further functional analyses highlighted dynamic changes in cell cycle in these populations with an acceleration of the cell cycle during erythroid progenitor differentiation. The finding that E2F4 expression was increased from EP1 to EP4 is consistent with the noted changes in cell cycle. Finally, our proteomic data suggest that the protein machinery necessary for both oxidative phosphorylation and glycolysis is present in these progenitor cells. Together, our data provide comprehensive insights into growth factor-dependence of erythroid progenitor proliferation and the proteome of four distinct populations of human erythroid progenitors which will be a useful framework for the study of erythroid disorders.
人类红细胞生成是一个复杂的过程,每秒可产生 250 万个红细胞。造血干细胞向红细胞系定向分化后,这一过程可分为三个不同的阶段:红系祖细胞分化、终末红细胞生成和网织红细胞成熟。我们最近将红细胞祖细胞的异质性解析为四个不同的亚群,分别命名为 EP1-EP4。在这里,我们研究了这四个祖细胞群在增殖和分化方面对生长因子的反应性。通过对分选的红细胞祖细胞进行基于质谱的蛋白质组学分析,我们定量测定了 EP1 到 EP4 中约 5500 种蛋白质的绝对表达量。进一步的功能分析突出了这些群体中细胞周期的动态变化,即在红细胞祖细胞分化过程中细胞周期加速。E2F4 表达从 EP1 到 EP4 增加的发现与细胞周期的变化一致。最后,我们的蛋白质组学数据表明,这些祖细胞中存在进行氧化磷酸化和糖酵解所需的蛋白质机器。总之,我们的数据提供了对红细胞祖细胞增殖的生长因子依赖性以及四个不同的人类红细胞祖细胞群体的蛋白质组的全面了解,这将为红细胞疾病的研究提供有用的框架。