Tomishima Siera A, Kim Dale D, Porter Nadia, Guha Ipsita, Dar Asif A, Ortega-Burgos Yohaniz, Roof Jennifer, Fazelinia Hossein, Spruce Lynn A, Thom Christopher S, Bowman Robert L, Oliver Paula M
Department of Pathology and Laboratory Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Division of Protective Immunity.
J Clin Invest. 2025 Jun 26;135(17). doi: 10.1172/JCI180913. eCollection 2025 Sep 2.
The balance of hematopoietic stem cell (HSC) self-renewal versus differentiation is essential to ensure long-term repopulation capacity while allowing response to events that require increased hematopoietic output. Proliferation and differentiation of HSCs and their progeny are controlled by the JAK/STAT pathway downstream of cytokine signaling. E3 ubiquitin ligases, like Cullin 5 (CUL5), can regulate JAK/STAT signaling by degrading signaling intermediates. Here we report that mice lacking CUL5 in hematopoietic cells (Cul5Vav-Cre) have increased numbers of hematopoietic stem and progenitor cells (HSPCs), splenomegaly, and extramedullary hematopoiesis. Differentiation in Cul5Vav-Cre mice is myeloid- and megakaryocyte-biased, resulting in leukocytosis, anemia, and thrombocytosis. Cul5Vav-Cre mice had increased HSC proliferation and circulation, associated with a decrease in CXCR4 surface expression. In bone marrow cells, we identified LRRC41 coimmunoprecipitated with CUL5, and vice versa, supporting that CRL5 forms a complex with LRRC41. We identified an accumulation of LRRC41 and STAT5 in Cul5Vav-Cre HSCs during IL-3 stimulation, supporting their regulation by CUL5. Whole-cell proteome analysis of HSPCs from Cul5Vav-Cre bone marrow identified upregulation of many STAT5 target genes and associated pathways. Finally, JAK1/2 inhibition with ruxolitinib normalized hematopoiesis in Cul5Vav-Cre mice. These studies demonstrate the function of CUL5 in HSC function, stem cell fate decisions, and regulation of IL-3 signaling.
造血干细胞(HSC)自我更新与分化之间的平衡对于确保长期的再增殖能力至关重要,同时还能对需要增加造血输出的事件做出反应。HSC及其子代的增殖和分化受细胞因子信号下游的JAK/STAT途径控制。E3泛素连接酶,如Cullin 5(CUL5),可通过降解信号中间体来调节JAK/STAT信号。在此,我们报告造血细胞中缺乏CUL5的小鼠(Cul5Vav-Cre)具有更多的造血干细胞和祖细胞(HSPC)、脾肿大以及髓外造血。Cul5Vav-Cre小鼠的分化偏向髓系和巨核细胞系,导致白细胞增多、贫血和血小板增多。Cul5Vav-Cre小鼠的HSC增殖和循环增加,这与CXCR4表面表达的降低有关。在骨髓细胞中,我们鉴定出LRRC41与CUL5共免疫沉淀,反之亦然,这支持CRL5与LRRC41形成复合物。我们发现在IL-3刺激期间,Cul5Vav-Cre HSC中LRRC41和STAT5积累,支持它们受CUL5调控。对来自Cul5Vav-Cre骨髓的HSPC进行全细胞蛋白质组分析,发现许多STAT5靶基因及相关途径上调。最后,用鲁索替尼抑制JAK1/2可使Cul5Vav-Cre小鼠的造血恢复正常。这些研究证明了CUL5在HSC功能、干细胞命运决定以及IL-3信号调节中的作用。