Medina Kay L, Pongubala Jagan M R, Reddy Karen L, Lancki David W, Dekoter Rodney, Kieslinger Matthias, Grosschedl Rudolf, Singh Harinder
Howard Hughes Medical Institute, Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, IL 60637, USA.
Dev Cell. 2004 Oct;7(4):607-17. doi: 10.1016/j.devcel.2004.08.006.
The generation of B lymphocyte precursors is dependent on the combinatorial action of the transcription factors PU.1, Ikaros, E2A, EBF, and Pax-5. Loss of PU.1 results in a severe reduction in Flk2+, IL-7R+ lymphoid progenitors as well as impaired expression of EBF and Pax-5. Restoration of EBF expression facilitates rapid generation of pro-B cells from PU.1-/- progenitors. Molecular analysis suggests that PU.1 directly participates in regulation of the EBF gene. Although PU.1 is dispensable for expression of most early B lineage genes, it is required for CD45R/B220. Using EBF-/- mutant progenitors, we show that EBF induces Pax-5 and the early program of B lineage gene expression. Importantly, Pax-5 does not rescue B cell development from either PU.1-/- or EBF-/- progenitors. Pax-5 expression and function are contingent on EBF. Based on these results, we propose a hierarchical regulatory network for specification and commitment to the B cell fate.
B淋巴细胞前体的产生依赖于转录因子PU.1、Ikaros、E2A、EBF和Pax-5的组合作用。PU.1的缺失导致Flk2+、IL-7R+淋巴祖细胞严重减少,同时EBF和Pax-5的表达受损。EBF表达的恢复促进了从PU.1-/-祖细胞快速产生前B细胞。分子分析表明,PU.1直接参与EBF基因的调控。虽然PU.1对于大多数早期B细胞谱系基因的表达并非必需,但它是CD45R/B220所必需的。利用EBF-/-突变祖细胞,我们发现EBF诱导Pax-5以及B细胞谱系基因表达的早期程序。重要的是,Pax-5不能挽救PU.1-/-或EBF-/-祖细胞的B细胞发育。Pax-5的表达和功能取决于EBF。基于这些结果,我们提出了一个用于B细胞命运特化和定向的分级调控网络。