Tachikawa Yoshimichi, Matsushima Takamitsu, Abe Yasunobu, Sakano Seiji, Yamamoto Masahiro, Nishimura Junji, Nawata Hajime, Takayanagi Ryouichi, Muta Koichiro
Department of Medicine and Bioregulatory Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Eur J Haematol. 2006 Oct;77(4):273-81. doi: 10.1111/j.0902-4441.2006.t0-1-EJH2708.x. Epub 2006 Aug 23.
Notch signaling plays an important role in cell fate decisions in developmental systems. To clarify its role in committed hematopoietic progenitor cells, we investigated the effects of Notch signaling in erythroid colony forming cells (ECFCs) generated from peripheral blood. ECFCs express Notch receptors, Notch1 and Notch2, and Notch ligands Delta1, Delta4, and Jagged1. When we assayed the effects of Notch ligands on erythroid maturation by flow cytometry, we found that immobilized Delta1 and immobilized Delta4 in particular inhibited maturation, whereas Jagged1 had no effect. In addition, Delta4 inhibited proliferation without reducing cell viability. Increases in expression levels of the Notch target gene hairy enhancer of split (HES) -1 were evident by real-time PCR after stimulation with immobilized Delta4. The effect of soluble Delta4 on expression of HES-1 was less pronounced than that seen with the immobilized form, indicating that all surface-bound ligands are important for effective signal transduction. When ECFCs were cultured in the presence of soluble Delta4 at a low cell concentration, erythroid maturation was slightly inhibited, but at a high concentration, maturation was promoted via competition of soluble Delta4 with endogenous ligands. These results indicate a pivotal role of Notch signaling in regulating erythroid maturation and proliferation, and further suggest that cell-cell interactions modulate growth of erythroid progenitor cells via Notch system.
Notch信号通路在发育系统中的细胞命运决定中起着重要作用。为了阐明其在定向造血祖细胞中的作用,我们研究了Notch信号通路对源自外周血的红系集落形成细胞(ECFCs)的影响。ECFCs表达Notch受体Notch1和Notch2,以及Notch配体Delta1、Delta4和Jagged1。当我们通过流式细胞术检测Notch配体对红系成熟的影响时,我们发现固定化的Delta1和固定化的Delta4尤其抑制成熟,而Jagged1没有影响。此外,Delta4抑制增殖但不降低细胞活力。在用固定化Delta4刺激后,通过实时PCR可明显观察到Notch靶基因毛状分裂增强子(HES)-1的表达水平增加。可溶性Delta4对HES-1表达的影响不如固定化形式明显,表明所有表面结合的配体对于有效的信号转导都很重要。当ECFCs在低细胞浓度下于可溶性Delta4存在的情况下培养时,红系成熟受到轻微抑制,但在高浓度下,通过可溶性Delta4与内源性配体的竞争促进了成熟。这些结果表明Notch信号通路在调节红系成熟和增殖中起关键作用,并进一步表明细胞间相互作用通过Notch系统调节红系祖细胞的生长。