Kanayama Naoki, Cascalho Marilia, Ohmori Hitoshi
Department of Bioscience and Biotechnology, Faculty of Engineering, Okayama University, Tsushima-Naka, Okayama, Japan.
J Immunol. 2005 Feb 1;174(3):1438-45. doi: 10.4049/jimmunol.174.3.1438.
The quasimonoclonal (QM) mouse provides an intelligible model to analyze the B cell selection as the competition between two major 4-hydroxy-3-nitrophenylacetyl-specific B cell populations whose BCR are comprised of the knockin V(H)17.2.25 (V(H)T)-encoded H chain and the lambda1 or lambda2 L chain. In this study, we show the QM system is useful to examine how BCR signals guide a subset of B cells to the marginal zone (MZ). Compared with the control C57BL/6 mice, the QM mice had approximately 2.7-fold increased number of B cells exhibiting the MZ B cell phenotype and a larger MZ area in the spleen. Interestingly, V(H)T/lambda2 B cells significantly predominated over V(H)T/lambda1 B cells in MZ-(V(H)T/lambda1:V(H)T/lambda2 approximately 3:7) and transitional 2-B cell subsets, while these two populations were comparable in immature, transitional 1, and mature counterparts. Thus, the biased use of lambda2 in the MZ B cells may be the result of selection in the periphery. The enlargement of MZ B cell compartment and the preferred recruitment of the V(H)T/lambda2 B cells were further augmented by doubling the V(H)T gene, but dampened by the dysfunction of Bruton's tyrosine kinase, suggesting a positive role of BCR signaling in this selection. Comparison of Ag specificity between V(H)T/lambda1 and V(H)T/lambda2 IgM mAbs revealed a polyreactive nature of the V(H)T/lambda2 BCR, including the reactivity with ssDNA. Taken together, it is suggested that polyreactivity (including self-reactivity) of BCR is crucial in driving B cells to differentiate into the MZ phenotype.
准单克隆(QM)小鼠为分析B细胞选择提供了一个易于理解的模型,可用于研究两种主要的4-羟基-3-硝基苯乙酰特异性B细胞群体之间的竞争,这两种群体的BCR由敲入的V(H)17.2.25(V(H)T)编码的重链和lambda1或lambda2轻链组成。在本研究中,我们表明QM系统有助于研究BCR信号如何引导一部分B细胞进入边缘区(MZ)。与对照C57BL/6小鼠相比,QM小鼠中表现出MZ B细胞表型的B细胞数量增加了约2.7倍,脾脏中的MZ区域更大。有趣的是,在MZ-(V(H)T/lambda1:V(H)T/lambda2约为3:7)和过渡2-B细胞亚群中,V(H)T/lambda2 B细胞显著多于V(H)T/lambda1 B细胞,而在未成熟、过渡1和成熟对应亚群中,这两个群体相当。因此,MZ B细胞中lambda2的偏向使用可能是外周选择的结果。通过将V(H)T基因加倍,MZ B细胞区室的扩大和V(H)T/lambda2 B细胞的优先募集进一步增强,但布鲁顿酪氨酸激酶功能障碍会使其减弱,这表明BCR信号在该选择中起积极作用。V(H)T/lambda1和V(H)T/lambda2 IgM单克隆抗体之间的抗原特异性比较显示,V(H)T/lambda2 BCR具有多反应性,包括与单链DNA的反应性。综上所述,提示BCR的多反应性(包括自身反应性)对于驱动B细胞分化为MZ表型至关重要。