Cronin F E, Jiang M, Abbas A K, Grupp S A
Department of Pathology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
J Immunol. 1998 Jul 1;161(1):252-9.
There is good evidence for a signaling role played by Ig heavy chain in the developmental transition through the pre-B cell stage. We have previously described signal-capable or signal-incapable mutants of mu heavy chain in which a signaling defect is caused by failure to associate with the Ig alpha/beta heterodimer. To further characterize the role of Ig heavy chain-mediated signaling in vivo, as well as in B cell development and allelic exclusion, we have created transgenic mice in which the B cells express these signal-capable and signal-incapable mutant mu chains. Failure of mu to signal via Ig alpha/beta results in a block in B cell development in mice expressing the signal-incapable mu. A small number of B cells in these animals do escape the developmental block and are expressed in the spleen and the periphery as B220+ transgenic IgM+ cells. These cells respond to LPS by proliferating but show no response to T-independent-specific Ag. In contrast, B cells expressing the signal-capable B cell receptor show a strong signaling response to Ag-specific stimulus. There is no Ig alpha seen in association with signal-deficient IgM. Thus, the B cell receptor complex is not assembled, and no signal can be delivered. Despite the block in developmental signaling, allelic exclusion is complete. There is no detectable coexpression of transgenic IgM and endogenous murine IgM, nor is there rearrangement of the endogenous heavy chain genes. This suggests that differing signaling mechanisms are responsible for the developmental transition and allelic exclusion and thus allows for separate examination of these signaling mechanisms.
有充分证据表明,Ig重链在B前体细胞阶段的发育转变中发挥信号传导作用。我们之前描述过μ重链的信号传导能力正常或缺陷的突变体,其中信号传导缺陷是由于未能与Igα/β异二聚体结合所致。为了进一步阐明Ig重链介导的信号传导在体内以及在B细胞发育和等位基因排斥中的作用,我们构建了转基因小鼠,其B细胞表达这些信号传导能力正常和缺陷的突变μ链。在表达信号传导缺陷型μ链的小鼠中,μ链无法通过Igα/β传导信号导致B细胞发育受阻。这些动物中有少量B细胞确实逃脱了发育阻滞,并作为B220 +转基因IgM +细胞在脾脏和外周组织中表达。这些细胞对LPS有增殖反应,但对非T细胞依赖性特异性抗原无反应。相比之下,表达信号传导能力正常的B细胞受体的B细胞对抗原特异性刺激有强烈的信号传导反应。在信号传导缺陷的IgM中未发现与Igα结合。因此,B细胞受体复合物未组装,无法传递信号。尽管发育信号传导受阻,但等位基因排斥仍完全发生。未检测到转基因IgM和内源性小鼠IgM的共表达,内源性重链基因也未发生重排。这表明不同的信号传导机制负责发育转变和等位基因排斥,因此可以分别研究这些信号传导机制。