Hayashi Katsuhiko, Nojima Takuya, Goitsuka Ryo, Kitamura Daisuke
Division of Molecular Biology, Research Institute for Biological Sciences, Tokyo University of Science, Yamazaki 2669, Noda, Chiba 278-0022, Japan.
J Immunol. 2004 Nov 15;173(10):5980-8. doi: 10.4049/jimmunol.173.10.5980.
The editing of B cell Ag receptor (BCR) through successive rearrangements of Ig genes has been considered to be a major mechanism for the central B cell tolerance, which precludes appearance of self-reactive B cells, through studies using anti-self-Ig transgenic/knock-in mouse systems. However, contribution of the receptor editing in the development of the normal B cell repertoire remains unclear. In addition, the signaling pathway directing this event is unknown. In this study, we demonstrate that receptor editing in anti-DNA Ig knock-in mice is impaired in the absence of an adaptor protein BASH (BLNK/SLP-65) that is involved in BCR signaling. Remarkably, the supposed hallmarks of receptor editing such as Iglambda chain expression, recombination sequence rearrangements at Igkappa loci, and presence of in-frame VkappaJkappa joins in the Igkappa loci inactivated by the recombination sequence rearrangements, were all diminished in BASH-deficient mice with unmanipulated Ig loci. BCR ligation-induced Iglambda gene recombination in vitro was also impaired in BASH-deficient B cells. Furthermore, the BASH-deficient mice showed an excessive Ab response to a DNA carrier immunization, suggesting the presence of unedited DNA-reactive B cells in the periphery. These results not only define a signaling pathway required for receptor editing but indicate that the BCR-signaled receptor editing indeed operates in the development of normal B cell repertoire and contributes to establishing the B cell tolerance.
通过使用抗自身Ig转基因/敲入小鼠系统进行的研究,人们认为通过Ig基因的连续重排对B细胞抗原受体(BCR)进行编辑是中枢B细胞耐受的主要机制,该机制可防止自身反应性B细胞的出现。然而,受体编辑在正常B细胞库发育中的作用仍不清楚。此外,指导这一过程的信号通路也尚不明确。在本研究中,我们证明,在缺乏参与BCR信号传导的衔接蛋白BASH(BLNK/SLP-65)的情况下,抗DNA Ig敲入小鼠中的受体编辑受损。值得注意的是,在未处理Ig基因座的BASH缺陷小鼠中,受体编辑的假定标志,如Iglambda链表达、Igkappa基因座处的重组序列重排以及因重组序列重排而失活的Igkappa基因座中框内VkappaJkappa连接的存在,均减少。在体外,BASH缺陷B细胞中BCR连接诱导的Iglambda基因重组也受损。此外,BASH缺陷小鼠对DNA载体免疫表现出过度的抗体反应,表明外周存在未编辑的DNA反应性B细胞。这些结果不仅确定了受体编辑所需的信号通路,而且表明BCR信号传导的受体编辑确实在正常B细胞库的发育中起作用,并有助于建立B细胞耐受。