Institute of Experimental Hematology, Hannover Medical School, Carl-Neuberg-Strasse 1, 30625, Hannover, Germany.
REBIRTH - Research Center for Translational Regenerative Medicine, Hannover Medical School, Hannover, Germany.
Sci Rep. 2021 Mar 5;11(1):5294. doi: 10.1038/s41598-021-84468-3.
Regulation of haematopoietic stem cell fate through conditional gene expression could improve understanding of healthy haematopoietic and leukaemia initiating cell (LIC) biology. We established conditionally immortalised myeloid progenitor cell lines co-expressing constitutive Hoxa9.EGFP and inducible Meis1.dTomato (H9M-ciMP) to study growth behaviour, immunophenotype and morphology under different cytokine/microenvironmental conditions ex vivo upon doxycycline (DOX) induction or removal. The vector design and drug-dependent selection approach identified new retroviral insertion (RVI) sites that potentially collaborate with Meis1/Hoxa9 and define H9M-ciMP fate. For most cell lines, myelomonocytic conditions supported reversible H9M-ciMP differentiation into neutrophils and macrophages with DOX-dependent modulation of Hoxa9/Meis1 and CD11b/Gr-1 expression. Here, up-regulation of Meis1/Hoxa9 promoted reconstitution of exponential expansion of immature H9M-ciMPs after DOX reapplication. Stem cell maintaining conditions supported selective H9M-ciMP exponential growth. H9M-ciMPs that had Ninj2 RVI and were cultured under myelomonocytic or stem cell maintaining conditions revealed the development of DOX-dependent acute myeloid leukaemia in a murine transplantation model. Transcriptional dysregulation of Ninj2 and distal genes surrounding RVI (Rad52, Kdm5a) was detected. All studied H9M-ciMPs demonstrated adaptation to T-lymphoid microenvironmental conditions while maintaining immature myelomonocytic features. Thus, the established system is relevant to leukaemia and stem cell biology.
通过条件性基因表达来调节造血干细胞命运,可以增进对健康造血和白血病起始细胞(LIC)生物学的理解。我们建立了共表达组成型 Hoxa9.EGFP 和诱导型 Meis1.dTomato(H9M-ciMP)的条件永生化髓系祖细胞系,以研究在不同细胞因子/微环境条件下,经多西环素(DOX)诱导或去除后,体外生长行为、免疫表型和形态。载体设计和药物依赖性选择方法确定了新的逆转录病毒插入(RVI)位点,这些位点可能与 Meis1/Hoxa9 协同作用,并定义 H9M-ciMP 命运。对于大多数细胞系,髓系单核细胞条件支持可逆的 H9M-ciMP 分化为中性粒细胞和巨噬细胞,DOX 依赖性调节 Hoxa9/Meis1 和 CD11b/Gr-1 的表达。在此,Meis1/Hoxa9 的上调促进了 DOX 再应用后不成熟 H9M-ciMP 的指数扩增的重建。维持干细胞的条件支持 H9M-ciMP 的选择性指数增长。在髓系单核细胞或维持干细胞的条件下培养具有 Ninj2 RVI 的 H9M-ciMP 揭示了在小鼠移植模型中,DOX 依赖性急性髓系白血病的发展。检测到 Ninj2 和 RVI 周围的远端基因(Rad52、Kdm5a)的转录失调。所有研究的 H9M-ciMP 均表现出对 T 淋巴细胞微环境条件的适应,同时保持不成熟的髓系单核细胞特征。因此,所建立的系统与白血病和干细胞生物学相关。