Felli M P, Maroder M, Mitsiadis T A, Campese A F, Bellavia D, Vacca A, Mann R S, Frati L, Lendahl U, Gulino A, Screpanti I
Department of Experimental Medicine, University of L'Aquila, Aquila 67100, Italy.
Int Immunol. 1999 Jul;11(7):1017-25. doi: 10.1093/intimm/11.7.1017.
The suggested role of Notch1 or its mutants in thymocyte differentiation and T cell tumorigenesis raises the question of how the different members of the Notch family influence distinct steps in T cell development and the role played by Notch ligands in the thymus. We report here that different Notch receptor-ligand partnerships may occur inside the thymus, as we observed differential expression of Notch1, 2 and 3 receptors, their ligands Jagged1 and 2, and downstream intracellular effectors hairy and Enhancer of Split homolog 1 (HES-1) and hairy and Enhancer of Split homolog 5 (HES-5), depending on ontogenetic stage and thymic cell populations. Indeed, while Jagged2 is expressed in both stromal cells and thymocytes, Jagged1 expression is restricted to stromal cells. Moreover, a differential distribution of Notch3, with respect to Notch1, was observed in distinct age-related thymocyte subsets. Finally, Notch3 was preferentially up-regulated in thymocytes, following the induction of their differentiation by interaction with thymic epithelial cells expressing the cognate Jagged1 and 2 ligands, suggesting that, besides Notch1, Notch3 may also be involved in distinct steps of thymocyte development. Our results suggest that the Notch signaling pathway is involved in a complex interplay of T cell developmental stages, as a consequence of the heterogeneity and specific expression of members of the Notch receptor family and their cognate ligands, in distinct thymic cell compartments.
Notch1及其突变体在胸腺细胞分化和T细胞肿瘤发生中所起的作用引发了这样一个问题:Notch家族的不同成员如何影响T细胞发育的不同阶段,以及Notch配体在胸腺中发挥何种作用。我们在此报告,胸腺内可能存在不同的Notch受体-配体组合,因为我们观察到Notch1、2和3受体、其配体Jagged1和2以及下游细胞内效应分子毛状和分裂增强子同源物1(HES-1)和毛状和分裂增强子同源物5(HES-5)的表达存在差异,这取决于个体发育阶段和胸腺细胞群体。实际上,虽然Jagged2在基质细胞和胸腺细胞中均有表达,但Jagged1的表达仅限于基质细胞。此外,在不同年龄相关的胸腺细胞亚群中观察到Notch3相对于Notch1的分布存在差异。最后,在胸腺细胞与表达同源Jagged1和2配体的胸腺上皮细胞相互作用诱导其分化后,Notch3优先上调,这表明除了Notch1外,Notch3也可能参与胸腺细胞发育的不同阶段。我们的结果表明,由于Notch受体家族成员及其同源配体在不同胸腺细胞区室中的异质性和特异性表达,Notch信号通路参与了T细胞发育阶段的复杂相互作用。