Santos Margarida Almeida, Sarmento Leonor Morais, Rebelo Manuel, Doce Ana Agua, Maillard Ivan, Dumortier Alexis, Neves Helia, Radtke Freddy, Pear Warren S, Parreira Leonor, Demengeot Jocelyne
Instituto Gulbenkian de Ciência, 2781-901 Oeiras, Portugal.
Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15454-9. doi: 10.1073/pnas.0702891104. Epub 2007 Sep 18.
Notch signaling regulates B and T lymphocyte development and T cell effector class decision. In this work, we tested whether Notch activity affects mature B cell activation and differentiation to antibody-secreting cells (ASC). We show increased frequency of ASC in cultures of splenic B cells activated with LPS or anti-CD40 when provided exogenous Notch ligand Delta-like-1 (Dll1). Our results indicate that Notch-Dll1 interaction releases a default pathway that otherwise inhibits Ig secretion upon B cell activation. Thus, Dll1 enhanced spontaneous Ig secretion by naturally activated marginal zone B and B1 cells and reversed the inhibition of ASC differentiation mediated by B cell receptor crosslinking during LPS. Moreover, suppression of Notch signaling in B cell expression of either a dominant-negative mutant form of Mastermind-like 1 or a null mutation of Notch1 not only prevented Dll1-mediated enhancement of ASC differentiation but also reduced dramatically LPS-induced Ig secretion. Finally, we show that Dll1 and Jagged-1 are differentially expressed in discrete areas of the spleen, and that the effect of Notch engagement on Ig secretion is ligand-specific. These results indicate that Notch ligands participate in the definition of the mature B cell microenvironment that influences their terminal differentiation.
Notch信号通路调节B淋巴细胞和T淋巴细胞的发育以及T细胞效应亚群的决定。在本研究中,我们测试了Notch活性是否影响成熟B细胞的活化以及向抗体分泌细胞(ASC)的分化。我们发现,当提供外源性Notch配体Delta样1(Dll1)时,用脂多糖(LPS)或抗CD40激活的脾B细胞培养物中ASC的频率增加。我们的结果表明,Notch-Dll1相互作用释放了一条默认途径,否则该途径会在B细胞活化时抑制Ig分泌。因此,Dll1增强了自然活化的边缘区B细胞和B1细胞的自发Ig分泌,并逆转了LPS刺激期间B细胞受体交联介导的对ASC分化的抑制作用。此外,在B细胞中表达主调控分子样1的显性负性突变体形式或Notch1的无效突变来抑制Notch信号通路,不仅阻止了Dll1介导的ASC分化增强,还显著降低了LPS诱导的Ig分泌。最后,我们发现Dll1和Jagged-1在脾脏的不同区域差异表达,并且Notch参与对Ig分泌的影响具有配体特异性。这些结果表明,Notch配体参与了影响成熟B细胞终末分化的微环境的形成。