Laboratory of Hemato-oncology, Institute of Molecular Genetics of the Czech Academy of Sciences, Prague, Czech Republic.
Faculty of Science, Charles University, Prague, Czech Republic.
EMBO J. 2023 Dec 1;42(23):e113527. doi: 10.15252/embj.2023113527. Epub 2023 Oct 17.
Emergency granulopoiesis is the enhanced and accelerated production of granulocytes that occurs during acute infection. The contribution of hematopoietic stem cells (HSCs) to this process was reported; however, how HSCs participate in emergency granulopoiesis remains elusive. Here, using a mouse model of emergency granulopoiesis we observe transcriptional changes in HSCs as early as 4 h after lipopolysaccharide (LPS) administration. We observe that the HSC identity is changed towards a myeloid-biased HSC and show that CD201 is enriched in lymphoid-biased HSCs. While CD201 expression under steady-state conditions reveals a lymphoid bias, under emergency granulopoiesis loss of CD201 marks the lymphoid-to-myeloid transcriptional switch. Mechanistically, we determine that lymphoid-biased CD201 HSCs act as a first response during emergency granulopoiesis due to direct sensing of LPS by TLR4 and downstream activation of NF-κΒ signaling. The myeloid-biased CD201 HSC population responds indirectly during an acute infection by sensing G-CSF, increasing STAT3 phosphorylation, and upregulating LAP/LAP* C/EBPβ isoforms. In conclusion, HSC subpopulations support early phases of emergency granulopoiesis due to their transcriptional rewiring from a lymphoid-biased to myeloid-biased population and thus establishing alternative paths to supply elevated numbers of granulocytes.
应急性粒细胞生成是指在急性感染期间增强和加速粒细胞的产生。造血干细胞(HSCs)对此过程有贡献;然而,HSCs 如何参与应急性粒细胞生成仍然难以捉摸。在这里,我们使用应急性粒细胞生成的小鼠模型,观察到在脂多糖(LPS)给药后 4 小时,HSCs 中的转录变化。我们观察到 HSC 特性向偏骨髓的 HSC 转变,并表明 CD201 在偏淋系的 HSCs 中富集。虽然在稳态条件下 CD201 的表达显示出淋系偏向,但在应急性粒细胞生成中,CD201 的缺失标志着淋系到骨髓系的转录开关。从机制上讲,我们确定偏淋系的 CD201 HSCs 由于 TLR4 直接感知 LPS 和下游 NF-κB 信号的激活,在应急性粒细胞生成中作为第一反应发挥作用。偏骨髓系的 CD201 HSC 群体通过感应 G-CSF、增加 STAT3 磷酸化和上调 LAP/LAP* C/EBPβ 同工型,在急性感染期间间接反应。总之,由于其从偏淋系到偏骨髓系的转录重排,HSC 亚群支持应急性粒细胞生成的早期阶段,从而建立了供应大量粒细胞的替代途径。