Department of Biomedical Sciences, Institute of Pharmacology and Toxicology, University of Veterinary Medicine Vienna, Vienna, Austria.
Umeå Center for Molecular Medicine, Umeå University, Umeå, Sweden; and.
Blood Adv. 2021 Jan 12;5(1):39-53. doi: 10.1182/bloodadvances.2020003022.
Studies of molecular mechanisms of hematopoiesis and leukemogenesis are hampered by the unavailability of progenitor cell lines that accurately mimic the situation in vivo. We now report a robust method to generate and maintain LSK (Lin-, Sca-1+, c-Kit+) cells, which closely resemble MPP1 cells. HPCLSKs reconstitute hematopoiesis in lethally irradiated recipient mice over >8 months. Upon transformation with different oncogenes including BCR/ABL, FLT3-ITD, or MLL-AF9, their leukemic counterparts maintain stem cell properties in vitro and recapitulate leukemia formation in vivo. The method to generate HPCLSKs can be applied to transgenic mice, and we illustrate it for CDK6-deficient animals. Upon BCR/ABLp210 transformation, HPCLSKsCdk6-/- induce disease with a significantly enhanced latency and reduced incidence, showing the importance of CDK6 in leukemia formation. Studies of the CDK6 transcriptome in murine HPCLSK and human BCR/ABL+ cells have verified that certain pathways depend on CDK6 and have uncovered a novel CDK6-dependent signature, suggesting a role for CDK6 in leukemic progenitor cell homing. Loss of CDK6 may thus lead to a defect in homing. The HPCLSK system represents a unique tool for combined in vitro and in vivo studies and enables the production of large quantities of genetically modifiable hematopoietic or leukemic stem/progenitor cells.
造血和白血病发生的分子机制研究受到缺乏能准确模拟体内情况的祖细胞系的阻碍。我们现在报告了一种生成和维持 LSK(Lin-、Sca-1+、c-Kit+)细胞的稳健方法,这些细胞非常类似于 MPP1 细胞。HPCLSKs 在致死性辐照受体小鼠中重建造血超过 8 个月。用不同的癌基因(包括 BCR/ABL、FLT3-ITD 或 MLL-AF9)转化后,其白血病对应物在体外保持干细胞特性,并在体内再现白血病形成。生成 HPCLSKs 的方法可应用于转基因小鼠,我们以 CDK6 缺陷型动物为例进行说明。在 BCR/ABLp210 转化后,HPCLSKsCdk6-/-诱导疾病的潜伏期明显延长,发生率降低,表明 CDK6 在白血病形成中的重要性。对小鼠 HPCLSK 和人 BCR/ABL+细胞中 CDK6 转录组的研究证实,某些通路依赖于 CDK6,并揭示了一个新的 CDK6 依赖性特征,表明 CDK6 在白血病祖细胞归巢中起作用。因此,CDK6 的缺失可能导致归巢缺陷。HPCLSK 系统代表了一种用于体外和体内联合研究的独特工具,并能够产生大量可遗传修饰的造血或白血病干细胞/祖细胞。