Hinman Rochelle M, Nichols Whitney A, Diaz Tracy M, Gallardo Teresa D, Castrillon Diego H, Satterthwaite Anne B
Department of Internal Medicine, Division of Rheumatology, The University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Int Immunol. 2009 Jul;21(7):831-42. doi: 10.1093/intimm/dxp049. Epub 2009 Jun 5.
B cell antigen receptor (BCR) cross-linking promotes proliferation and survival of mature B cells. Phosphoinositide-3-kinase-mediated down-regulation of pro-apoptotic and anti-mitogenic genes such as the Foxo family of transcription factors is an important component of this process. Previously, we demonstrated that BCR signaling decreases expression of transcripts for Foxo1, Foxo3 and Foxo4. We now show that BCR-induced down-regulation of Foxo3 and Foxo4 mRNA expression occurs via distinct mechanisms from those established for Foxo1. While Foxo1, Foxo3 and Foxo4 bind the same DNA sequence, the differential control of their expression upon B cell activation suggests that they may have unique functions in the B lineage. To begin to address this issue, we evaluated B cell development and function in Foxo3-/- mice. No effect of Foxo3 deficiency was observed with respect to the following parameters in the splenic B cell compartment: sub-population distribution, proliferation, in vitro differentiation and expression of the Foxo target genes cyclin G2 and B cell translocation gene 1. However, Foxo3-/- mice demonstrated increased basal levels of IgG2a, IgG3 and IgA. A significant reduction in pre-B cell numbers was also observed in Foxo3-/- bone marrow. Finally, recirculating B cells in the bone marrow and peripheral blood were decreased in Foxo3-/- mice, perhaps due to lower than normal expression of receptor for sphingosine-1 phosphate, which mediates egress from lymphoid organs. Thus, Foxo3 makes a unique contribution to B cell development, B cell localization and control of Ig levels.
B细胞抗原受体(BCR)交联可促进成熟B细胞的增殖和存活。磷酸肌醇-3-激酶介导的促凋亡和抗有丝分裂基因(如转录因子Foxo家族)的下调是这一过程的重要组成部分。此前,我们证明BCR信号传导会降低Foxo1、Foxo3和Foxo4转录本的表达。我们现在表明,BCR诱导的Foxo3和Foxo4 mRNA表达下调通过与Foxo1不同的机制发生。虽然Foxo1、Foxo3和Foxo4结合相同的DNA序列,但它们在B细胞激活时表达的差异控制表明它们在B细胞系中可能具有独特功能。为了开始解决这个问题,我们评估了Foxo3基因敲除小鼠中的B细胞发育和功能。在脾脏B细胞区室的以下参数方面,未观察到Foxo3缺陷的影响:亚群分布、增殖、体外分化以及Foxo靶基因细胞周期蛋白G2和B细胞易位基因1的表达。然而,Foxo3基因敲除小鼠的IgG2a、IgG3和IgA基础水平升高。在Foxo3基因敲除的骨髓中还观察到前B细胞数量显著减少。最后,Foxo3基因敲除小鼠骨髓和外周血中的再循环B细胞减少,这可能是由于介导从淋巴器官逸出的1-磷酸鞘氨醇受体表达低于正常水平。因此,Foxo3对B细胞发育、B细胞定位和Ig水平控制具有独特作用。