Schiedlmeier Bernhard, Santos Ana Cristina, Ribeiro Ana, Moncaut Natalia, Lesinski Dietrich, Auer Herbert, Kornacker Karl, Ostertag Wolfram, Baum Christopher, Mallo Moises, Klump Hannes
Department of Experimental Hematology, Hannover Medical School, Carl-Neuberg-Strasse 1, 30625 Hannover, Germany.
Proc Natl Acad Sci U S A. 2007 Oct 23;104(43):16952-7. doi: 10.1073/pnas.0703082104. Epub 2007 Oct 16.
Homeodomain-containing transcription factors are important regulators of stem cell behavior. HOXB4 mediates expansion of adult and embryo-derived hematopoietic stem cells (HSCs) when expressed ectopically. To define the underlying molecular mechanisms, we performed gene expression profiling in combination with subsequent functional analysis with enriched adult HSCs and embryonic derivatives expressing inducible HOXB4. Thereby, we identified a set of overlapping genes that likely represent "universal" targets of HOXB4. A substantial number of loci are involved in signaling pathways important for controlling self-renewal, maintenance, and differentiation of stem cells. Functional assays performed on selected pathways confirmed the biological coherence of the array results. HOXB4 activity protected adult HSCs from the detrimental effects mediated by the proinflammatory cytokine TNF-alpha. This protection likely contributes to the competitive repopulation advantage of HOXB4-expressing HSCs observed in vivo. The concept of TNF-alpha inhibition may also prove beneficial for patients undergoing bone marrow transplantation. Furthermore, we demonstrate that HOXB4 activity and FGF signaling are intertwined. HOXB4-mediated expansion of adult and ES cell-derived HSCs was enhanced by specific and complete inhibition of FGF receptors. In contrast, the expanding activity of HOXB4 on hematopoietic progenitors in day 4-6 embryoid bodies was blunted in the presence of basic FGF (FGF2), indicating a dominant negative effect of FGF signaling on the earliest hematopoietic cells. In summary, our results strongly suggest that HOXB4 modulates the response of HSCs to multiple extrinsic signals in a concerted manner, thereby shifting the balance toward stem cell self-renewal.
含同源结构域的转录因子是干细胞行为的重要调节因子。异位表达时,HOXB4可介导成年和胚胎来源的造血干细胞(HSC)的扩增。为了确定潜在的分子机制,我们结合基因表达谱分析以及随后对富集的成年HSC和表达可诱导HOXB4的胚胎衍生物进行的功能分析。由此,我们鉴定出一组重叠基因,它们可能代表HOXB4的“通用”靶点。大量基因座参与了对干细胞自我更新、维持和分化起重要作用的信号通路。对选定通路进行的功能分析证实了阵列结果的生物学一致性。HOXB4活性可保护成年HSC免受促炎细胞因子TNF-α介导的有害影响。这种保护作用可能有助于解释在体内观察到的表达HOXB4的HSC的竞争性再增殖优势。TNF-α抑制的概念可能对接受骨髓移植的患者也有益。此外,我们证明HOXB4活性与FGF信号传导相互关联。通过特异性和完全抑制FGF受体,可增强HOXB4介导的成年和ES细胞来源的HSC的扩增。相反,在存在碱性FGF(FGF2)的情况下,HOXB4对第4 - 6天胚状体中造血祖细胞的扩增活性减弱,表明FGF信号对最早的造血细胞具有显性负效应。总之,我们的结果强烈表明,HOXB4以协同方式调节HSC对多种外在信号的反应,从而使平衡向干细胞自我更新方向转变。