Division of Oncology, Section of Molecular Oncology, Department of Internal Medicine, Washington University in St. Louis, St. Louis, MO.
Department of Pediatrics, Washington University in St. Louis, St. Louis, MO.
Exp Hematol. 2014 Apr;42(4):317-327.e2. doi: 10.1016/j.exphem.2013.11.015. Epub 2013 Dec 25.
Recent findings from several groups have identified distinct classes of hematopoietic stem cells (HSCs) in the bone marrow, each with inherent functional biases in terms of their differentiation, self-renewal, proliferation, and lifespan. It has previously been demonstrated that myeloid- and lymphoid-biased HSCs can be prospectively enriched based on their degree of Hoechst dye efflux. In the present study, we used differential Hoechst efflux to enrich lineage-biased HSC subtypes and analyzed their functional potentials. Despite similar outputs in vitro, bone marrow transplantation assays revealed contrasting lineage differentiation in vivo. To stratify the molecular differences underlying these contrasting functional potentials at the clonal level, single-cell gene expression analysis was performed using the Fluidigm BioMark system and revealed dynamic expression of genes including Meis1, CEBP/α, Sfpi1, and Dnmt3a. Finally, single-cell gene expression analysis was used to unravel the opposing proliferative responses of lineage-biased HSCs to the growth factor TGF-β1, revealing a potential role for the cell cycle inhibitor Cdkn1c as molecular mediator. This work lends further credence to the concept of HSC heterogeneity, and it presents unprecedented molecular resolution of the HSC response to trophic factors using single-cell gene expression analysis.
最近,几个研究小组的发现鉴定了骨髓中具有不同功能偏向的造血干细胞(HSCs),它们在分化、自我更新、增殖和寿命方面都具有内在的功能偏向。先前已经证明,可以根据 Hoechst 染料外排程度来预测性地富集偏骨髓系和偏淋巴系的 HSCs。在本研究中,我们使用差异 Hoechst 外排来富集谱系偏向的 HSC 亚型,并分析它们的功能潜力。尽管体外表现相似,但骨髓移植实验表明体内的谱系分化存在差异。为了在克隆水平上分层这些具有相反功能潜力的分子差异,我们使用 Fluidigm BioMark 系统进行了单细胞基因表达分析,揭示了包括 Meis1、CEBP/α、Sfpi1 和 Dnmt3a 在内的基因的动态表达。最后,单细胞基因表达分析揭示了谱系偏向的 HSCs 对生长因子 TGF-β1 的相反增殖反应,表明细胞周期抑制剂 Cdkn1c 可能作为分子介体发挥作用。这项工作进一步证实了 HSC 异质性的概念,并使用单细胞基因表达分析以前所未有的分子分辨率揭示了 HSC 对营养因子的反应。