Kikuchi Y, Kume A, Urabe M, Mizukami H, Suzuki T, Ozaki K, Nagai T, Ozawa K
Division of Hematology, Department of Medicine, Jichi Medical University , Shimotsuke, Tochigi, Japan ; Division of Genetic Therapeutics, Center for Molecular Medicine, Jichi Medical University , Shimotsuke, Tochigi, Japan.
Division of Genetic Therapeutics, Center for Molecular Medicine, Jichi Medical University , Shimotsuke, Tochigi, Japan.
J Stem Cells Regen Med. 2011 Oct 30;7(2):61-8. doi: 10.46582/jsrm.0702010. eCollection 2011.
Although mesenchymal stem cells (MSCs) play pivotal supportive roles in hematopoiesis, how they interact with hematopoietic stem cells (HSCs) is not well understood. We investigated the interaction between HSCs and surrogate MSCs (C3H10T1/2 stromal cells), focusing on the molecular events induced by cell contact of these bipartite populations. C3H10T1/2 is a mesenchymal stromal cell line that can be induced to differentiate into preadipocytes (A54) and myoblasts (M1601). The stromal cell derivatives were cocultured with murine HSCs (Lineage(-)Sca1(+)), and gene expression profiles in stromal cells and HSCs were compared before and after the coculture. HSCs gave rise to cobblestone areas only on A54 cells, with ninefold more progenitors than on M1601 or undifferentiated C3H10T1/2 cells. Microarray-based screening and a quantitative reverse transcriptase directed-polymerase chain reaction showed that the levels of Notch ligands (Jagged1 and Delta-like 3) were increased in A54 cells upon interaction with HSCs. On the other hand, the expression of Notch1 and Hes1 was upregulated in the HSCs cocultured with A54 cells. A transwell assay revealed that the reciprocal upregulation was dependent on cell-to-cell contact. The result suggested that in the hematopoietic niche, HSCs help MSCs to produce Notch ligands, and in turn, MSCs help HSCs to express Notch receptor. Such a reciprocal upregulation would reinforce the downstream signaling to determine the fate of hematopoietic cell lineage. Clarification of the initiating events on cell contact should lead to the identification of specific molecular targets to facilitate HSC engraftment in transplantation therapy.
尽管间充质干细胞(MSCs)在造血过程中发挥着关键的支持作用,但其与造血干细胞(HSCs)的相互作用方式尚未完全明确。我们研究了HSCs与替代MSCs(C3H10T1/2基质细胞)之间的相互作用,重点关注这两个细胞群体接触所诱导的分子事件。C3H10T1/2是一种间充质基质细胞系,可被诱导分化为前脂肪细胞(A54)和成肌细胞(M1601)。将这些基质细胞衍生物与小鼠HSCs(谱系(-)Sca1(+))共培养,并比较共培养前后基质细胞和HSCs中的基因表达谱。HSCs仅在A54细胞上形成鹅卵石样区域,其祖细胞数量比在M1601或未分化的C3H10T1/2细胞上多九倍。基于微阵列的筛选和定量逆转录定向聚合酶链反应表明,与HSCs相互作用后,A54细胞中Notch配体(Jagged1和Delta样3)的水平升高。另一方面,与A54细胞共培养的HSCs中Notch1和Hes1的表达上调。Transwell分析表明,这种相互上调依赖于细胞间接触。结果表明,在造血微环境中,HSCs帮助MSCs产生Notch配体,反过来,MSCs帮助HSCs表达Notch受体。这种相互上调将加强下游信号传导,以决定造血细胞谱系的命运。阐明细胞接触时的起始事件应有助于确定促进移植治疗中HSC植入的特定分子靶点。