1Laboratory of Lymphocyte Signalling and Development, Babraham Institute, Cambridge CB22 3AT, UK.
Sci Signal. 2010 Aug 10;3(134):ra60. doi: 10.1126/scisignal.2001104.
B cell development is controlled by a series of checkpoints that ensure that the immunoglobulin (Ig)-encoding genes produce a functional B cell receptor (BCR) and antibodies. As part of this process, recombination-activating gene (Rag) proteins regulate the in-frame assembly of the Ig-encoding genes. The BCR consists of Ig proteins in complex with the immunoreceptor tyrosine-based activation motif (ITAM)-containing Igalpha and Igbeta chains. Whereas the activation of the tyrosine kinases Src and Syk is essential for BCR signaling, the pathways that act downstream of these kinases are incompletely defined. Previous work has revealed a key role for the p110delta isoform of phosphatidylinositol 3-kinase (PI3K) in agonist-induced BCR signaling; however, early B cell development and mature B cell survival, which depend on agonist-independent or "tonic" BCR signaling, are not substantially affected by a deficiency in p110delta. Here, we show that p110alpha, but not p110beta, compensated in the absence of p110delta to promote early B cell development in the bone marrow and B cell survival in the spleen. In the absence of both p110alpha and p110delta activities, pre-BCR signaling failed to suppress the production of Rag proteins and to promote developmental progression of B cell progenitors. Unlike p110delta, however, p110alpha did not contribute to agonist-induced BCR signaling. These studies indicate that either p110alpha or p110delta can mediate tonic signaling from the BCR, but only p110delta can contribute to antigen-dependent activation of B cells.
B 细胞的发育受到一系列检查点的控制,这些检查点确保免疫球蛋白 (Ig) 编码基因产生功能性 B 细胞受体 (BCR) 和抗体。在这个过程中,重组激活基因 (Rag) 蛋白调节 Ig 编码基因的框内组装。BCR 由与免疫受体酪氨酸基激活基序 (ITAM) 含有的 Igalpha 和 Igbeta 链复合的 Ig 蛋白组成。虽然Src 和 Syk 酪氨酸激酶的激活对于 BCR 信号转导是必不可少的,但这些激酶下游的途径尚未完全定义。先前的工作表明,磷脂酰肌醇 3-激酶 (PI3K) 的 p110delta 同工型在激动剂诱导的 BCR 信号转导中起着关键作用;然而,早期 B 细胞发育和成熟 B 细胞存活依赖于非激动剂依赖性或“基础”BCR 信号转导,p110delta 的缺乏并没有显著影响。在这里,我们表明 p110alpha,但不是 p110beta,在 p110delta 缺乏的情况下代偿,以促进骨髓中早期 B 细胞发育和脾脏中 B 细胞存活。在缺乏 p110alpha 和 p110delta 活性的情况下,pre-BCR 信号未能抑制 Rag 蛋白的产生,并促进 B 细胞前体的发育进展。然而,与 p110delta 不同,p110alpha 并未促进激动剂诱导的 BCR 信号转导。这些研究表明,p110alpha 或 p110delta 都可以介导 BCR 的基础信号转导,但只有 p110delta 才能有助于抗原依赖性 B 细胞的激活。