Department of Immunology, Weizmann Institute of Science, Rehovot, Israel.
Department of Computer Science and Applied Mathematics, Department of Biological Regulation, Weizmann Institute of Science, Rehovot, Israel.
Nat Cell Biol. 2018 Jul;20(7):836-846. doi: 10.1038/s41556-018-0121-4. Epub 2018 Jun 18.
The dynamics of haematopoietic stem cell differentiation and the hierarchy of oligopotent stem cells in the bone marrow remain controversial. Here we dissect haematopoietic progenitor populations at single cell resolution, deriving an unbiased reference model of transcriptional states in normal and perturbed murine bone marrow. We define the signature of the naive haematopoietic stem cell and find a continuum of core progenitor states. Core cell populations mix transcription of pre-myeloid and pre-lymphoid programs, but do not mix erythroid or megakaryocyte programs with other fates. CRISP-seq perturbation analysis confirms our models and reveals that Cebpa regulates entry into all myeloid fates, while Irf8 and PU.1 deficiency block later differentiation towards monocyte or granulocyte fates. Our transcriptional map defines a reference network model for blood progenitors and their differentiation trajectories during normal and perturbed haematopoiesis.
造血干细胞分化的动力学和骨髓中多能干细胞的层次结构仍然存在争议。在这里,我们在单细胞分辨率下剖析造血祖细胞群体,得出正常和受干扰的鼠骨髓中转录状态的无偏参考模型。我们定义了幼稚造血干细胞的特征,并发现了核心祖细胞状态的连续体。核心细胞群体混合了前髓细胞和前淋巴细胞程序的转录,但不将红细胞或巨核细胞程序与其他命运混合。CRISP-seq 扰动分析证实了我们的模型,并表明 Cebpa 调节进入所有髓样命运,而 Irf8 和 Pu.1 缺陷阻止向单核细胞或粒细胞命运的后期分化。我们的转录图谱定义了血液祖细胞及其在正常和受干扰造血过程中的分化轨迹的参考网络模型。