Laboratoire d'Immunologie, Université de Limoges, Centre National de la Recherche Scientifique Unité Mixte 6101, F-87025 Limoges, France.
Proc Natl Acad Sci U S A. 2010 Feb 16;107(7):3064-9. doi: 10.1073/pnas.0912393107. Epub 2010 Jan 28.
Sequentially along B cell differentiation, the different classes of membrane Ig heavy chains associate with the Ig alpha/Ig beta heterodimer within the B cell receptor (BCR). Whether each Ig class conveys specific signals adapted to the corresponding differentiation stage remains debated. We investigated the impact of the forced expression of an IgA-class receptor throughout murine B cell differentiation by knocking in the human C alpha Ig gene in place of the S mu region. Despite expression of a functional BCR, homozygous mutant mice showed a partial developmental blockade at the pro-B/pre-BI and large pre-BII cell stages, with decreased numbers of small pre-BII cells. Beyond this stage, peripheral B cell compartments of reduced size developed and allowed specific antibody responses, whereas mature cells showed constitutive activation and a strong commitment to plasma cell differentiation. Secreted IgA correctly assembled into polymers, associated with the murine J chain, and was transported into secretions. In heterozygous mutants, cells expressing the IgA allele competed poorly with those expressing IgM from the wild-type allele and were almost undetectable among peripheral B lymphocytes, notably in gut-associated lymphoid tissues. Our data indicate that the IgM BCR is more efficient in driving early B cell education and in mucosal site targeting, whereas the IgA BCR appears particularly suited to promoting activation and differentiation of effector plasma cells.
随着 B 细胞分化的进行,不同类别的膜 Ig 重链与 B 细胞受体 (BCR) 内的 Ig alpha/Ig beta 异二聚体结合。每个 Ig 类是否传递适应相应分化阶段的特定信号仍存在争议。我们通过在 S mu 区位置敲入人 C alpha Ig 基因,强制表达 IgA 类受体,从而研究了其对小鼠 B 细胞分化的影响。尽管表达了功能性 BCR,但纯合突变小鼠在前 B 细胞/前 BI 和大前 BII 细胞阶段表现出部分发育阻滞,小前 BII 细胞数量减少。在此阶段之后,较小的外周 B 细胞区室发育并允许产生特异性抗体反应,而成熟细胞表现出组成性激活和强烈的向浆细胞分化的倾向。分泌的 IgA 正确组装成聚合物,与小鼠 J 链结合,并被转运到分泌物中。在杂合突变体中,表达 IgA 等位基因的细胞与表达野生型等位基因 IgM 的细胞竞争能力较差,在外周 B 淋巴细胞中几乎无法检测到,特别是在肠道相关淋巴组织中。我们的数据表明,IgM BCR 在驱动早期 B 细胞教育和黏膜部位靶向方面更有效,而 IgA BCR 似乎特别适合促进效应浆细胞的激活和分化。