Pridans Clare, Holmes Melissa L, Polli Matthew, Wettenhall James M, Dakic Aleksandar, Corcoran Lynn M, Smyth Gordon K, Nutt Stephen L
The Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3050, Australia.
J Immunol. 2008 Feb 1;180(3):1719-28. doi: 10.4049/jimmunol.180.3.1719.
The transcription factor Pax5 is essential for B cell commitment in the mouse, where it represses lineage-inappropriate gene expression while simultaneously activating the B cell gene expression program. In this study we have performed a global gene expression screen of wild-type and Pax5-deficient pro-B cells in an attempt to identify the crucial Pax5 targets in early B lymphopoiesis. These studies have identified 109 Pax5 targets comprising 61% activated and 39% repressed genes. Interestingly, Pax5 directly regulates the genes encoding a number of transcription factors that are required at the pre-B cell stage of differentiation, including Irf8, Spib, and Ikzf3 (Aiolos), suggesting that a key function of Pax5 is to activate secondary transcription factors that further reinforce the B cell program. Pax5 is also required for the expression of many genes known to be involved in adhesion and signaling, indicating that Pax5 modulates the homing and or migration properties of B cell progenitors. Finally, Pax5 also represses a cohort of genes that are involved in multiple biological processes, many of which are not typically associated with B cells. These include the repression of the adhesion molecule Embigin, which is expressed in bone marrow progenitors, T cells, and myeloid cells but is specifically repressed by Pax5 in B cells.
转录因子Pax5对小鼠B细胞的定向分化至关重要,它在抑制不适当谱系的基因表达的同时,还能激活B细胞基因表达程序。在本研究中,我们对野生型和Pax5缺陷型前B细胞进行了全基因组表达筛选,试图确定早期B淋巴细胞生成过程中关键的Pax5靶点。这些研究确定了109个Pax5靶点,其中61%为激活基因,39%为抑制基因。有趣的是,Pax5直接调控了一些在B细胞分化前B细胞阶段所需的转录因子的编码基因,包括Irf8、Spib和Ikzf3(Aiolos),这表明Pax5的一个关键功能是激活二级转录因子,进一步强化B细胞程序。Pax5对于许多已知参与黏附与信号传导的基因的表达也是必需的,这表明Pax5调节B细胞祖细胞的归巢和/或迁移特性。最后,Pax5还抑制了一组参与多种生物学过程的基因,其中许多基因通常与B细胞无关。这些基因包括黏附分子Embigin的抑制,Embigin在骨髓祖细胞、T细胞和髓系细胞中表达,但在B细胞中被Pax5特异性抑制。