Department of Clinical and Experimental Medicine, Faculty for Health Sciences, Linköping University, 58285 Linköping, Sweden.
Proc Natl Acad Sci U S A. 2012 Sep 25;109(39):15871-6. doi: 10.1073/pnas.1210144109. Epub 2012 Sep 10.
To better understand the process of B-lymphocyte lineage restriction, we have investigated molecular and functional properties in early B-lineage cells from Pax-5-deficient animals crossed to a B-lineage-restricted reporter mouse, allowing us to identify B-lineage-specified progenitors independently of conventional surface markers. Pax-5 deficiency resulted in a dramatic increase in the frequency of specified progenitor B-cells marked by expression of a λ5 (Igll1) promoter-controlled reporter gene. Gene expression analysis of ex vivo isolated progenitor cells revealed that Pax-5 deficiency has a minor impact on B-cell specification. However, single-cell in vitro differentiation analysis of ex vivo isolated cells revealed that specified B-lineage progenitors still displayed a high degree of plasticity for development into NK or T lineage cells. In contrast, we were unable to detect any major changes in myeloid lineage potential in specified Pax-5-deficient cells. By comparison of gene expression patterns in ex vivo isolated Pax-5- and Ebf-1-deficient progenitors, it was possible to identify a set of B-cell-restricted genes dependent on Ebf-1 but not Pax-5, supporting the idea that B-cell specification and commitment is controlled by distinct regulatory networks.
为了更好地理解 B 淋巴细胞谱系限制的过程,我们研究了 Pax-5 缺陷动物与 B 细胞谱系受限报告小鼠杂交后早期 B 细胞谱系细胞的分子和功能特性,使我们能够独立于常规表面标记来识别 B 细胞谱系特异性祖细胞。Pax-5 缺陷导致表达 λ5(Igll1)启动子控制的报告基因的指定祖细胞 B 细胞的频率显着增加。对体外分离的祖细胞进行的基因表达分析表明,Pax-5 缺陷对 B 细胞特异性的影响很小。然而,体外分离细胞的单细胞分化分析表明,指定的 B 细胞谱系祖细胞仍然表现出高度的可塑性,可发育为 NK 或 T 细胞谱系细胞。相比之下,我们无法检测到指定的 Pax-5 缺陷细胞中骨髓细胞谱系潜力的任何重大变化。通过比较体外分离的 Pax-5 和 Ebf-1 缺陷祖细胞的基因表达模式,可以确定一组依赖于 Ebf-1但不依赖于 Pax-5 的 B 细胞特异性基因,支持 B 细胞特异性和承诺由不同的调控网络控制的观点。