Goda Chinmayee, Kulkarni Rohan, Bustos Yaphet, Li Wenjun, Rudich Alexander, Balcioglu Ozlen, Chidester Sadie, Urs Amog P, Karunasiri Malith, Al-Marrawi Yzen, Korn Erin, Kanna Sanjay, Garfinkle Elizabeth A R, Shah Nisarg, Wooten Ashley, Mundy-Bosse Bethany, Sehgal Lalit, Zhang Bin, Marcucci Guido, Mardis Elaine R, Garzon Ramiro, Bowman Robert L, Viny Aaron D, Miles Linde A, Miller Katherine E, Dorrance Adrienne M
Division of Oncology, Huntsman Cancer Institute, University of Utah, 2000 Circle of Hope Way, Salt Lake City, UT, 84112, USA.
The Division of Hematology, Department of Internal Medicine at The Ohio State University, 460 W.12th Ave. Columbus, Ohio, 43210, USA.
Leukemia. 2025 Jan;39(1):51-63. doi: 10.1038/s41375-024-02415-3. Epub 2024 Oct 2.
Leukemias arise from recurrent clonal mutations in hematopoietic stem/progenitor cells (HSPCs) that cause profound changes in the bone marrow microenvironment (BMM) favoring leukemic stem cell (LSC) growth over normal HSPCs. Understanding the cross talk between preleukemic mutated HSPCs and the BMM is critical to develop novel therapeutic strategies to prevent leukemogenesis. We hypothesize that preleukemic-LSCs (pLSCs) induce BMM changes critical for leukemogenesis. Using our AML-murine model, we performed single-cell RNA-sequencing of preleukemic BMM (pBMM) cells. We found normal HSC (nHSC)-regulating LepR+ mesenchymal stem cells, and endothelial cells were decreased, along with increases in CD55+ fibroblasts and pericytes. Preleukemic CD55+ fibroblasts had higher proliferation rates and decreased collagen expression, suggesting extracellular matrix remodeling during leukemogenesis. Importantly, co-culture assays found preleukemic CD55+ fibroblasts expanded pLSCs significantly over nHSCs. In conclusion, we have identified a distinct pBMM and a novel CD55+ fibroblast population that is expanded in pBMM that promote fitness of pLSCs over nHSCs.
白血病源于造血干/祖细胞(HSPCs)中的复发性克隆突变,这些突变会导致骨髓微环境(BMM)发生深刻变化,使白血病干细胞(LSC)比正常HSPCs更易生长。了解白血病前期突变的HSPCs与BMM之间的相互作用对于开发预防白血病发生的新治疗策略至关重要。我们假设白血病前期LSCs(pLSCs)会诱导对白血病发生至关重要的BMM变化。利用我们的AML小鼠模型,我们对白血病前期BMM(pBMM)细胞进行了单细胞RNA测序。我们发现,正常HSC(nHSC)调节性LepR+间充质干细胞和内皮细胞减少,同时CD55+成纤维细胞和周细胞增加。白血病前期CD55+成纤维细胞具有更高的增殖率且胶原蛋白表达降低,这表明白血病发生过程中存在细胞外基质重塑。重要的是,共培养试验发现,白血病前期CD55+成纤维细胞使pLSCs的扩增明显超过nHSCs。总之,我们鉴定出了一种独特的pBMM和一种在pBMM中扩增的新型CD55+成纤维细胞群体,该群体促进pLSCs相对于nHSCs的适应性。