Department of Molecular Biology, Umeå University, Umeå, Sweden.
Mol Immunol. 2010 Feb;47(5):1031-8. doi: 10.1016/j.molimm.2009.11.015. Epub 2009 Dec 21.
To create antibody diversity, B lymphocyte development is characterized by the ordered rearrangement of first immunoglobulin (Ig) heavy chain gene segments and then Ig light-chain gene segments. Early in B-cell development, expression of a pre-B-cell receptor (pre-BCR) composed of membrane-bound Ig heavy chain protein associated with surrogate light-chain (SLC) proteins serves as a critical checkpoint that monitors for functional heavy chain rearrangement. Signaling from the pre-BCR induces clonal expansion, but it also turns off transcription of the genes for the SLC proteins lambda5 and VpreB, which limits this proliferation. Here we show that signaling from the pre-BCR rapidly down-regulates lambda5 and VpreB and also the co-receptor CD19 in primary pre-B-cells. We show that calcium (Ca(2+)) signaling is essential for this silencing of the SLC and CD19 genes. The SLC genes are activated by the E2A transcription factor, and we show that E2A is required for pre-BCR-mediated regulation of the genes. E2A mutated in its binding site for the Ca(2+) sensor protein calmodulin, and thus with calmodulin-resistant DNA binding, makes lambda5, VpreB and CD19 expression resistant to the inhibition following pre-BCR activation. Thus, Ca(2+) down-regulates SLC and CD19 gene expression upon pre-BCR activation through inhibition of E2A by Ca(2+)/calmodulin.
为了产生抗体多样性,B 淋巴细胞的发育以免疫球蛋白(Ig)重链基因片段的有序重排为特征,然后是 Ig 轻链基因片段。在 B 细胞发育早期,由膜结合 Ig 重链蛋白与替代轻链(SLC)蛋白组成的前 B 细胞受体(pre-BCR)的表达作为一个关键的检查点,用于监测功能性重链重排。pre-BCR 的信号转导诱导克隆扩增,但它也关闭了 SLC 蛋白 lambda5 和 VpreB 的基因转录,从而限制了这种增殖。在这里,我们表明,pre-BCR 的信号转导迅速下调了 lambda5 和 VpreB 以及初级 pre-B 细胞中的共受体 CD19。我们表明,钙(Ca(2+))信号转导对于 SLC 和 CD19 基因的沉默是必需的。SLC 基因由 E2A 转录因子激活,我们表明 E2A 是 pre-BCR 介导的基因调节所必需的。E2A 突变其与钙(Ca(2+))传感器蛋白钙调蛋白的结合位点,因此具有钙调蛋白抗性 DNA 结合,使 lambda5、VpreB 和 CD19 的表达对 pre-BCR 激活后的抑制具有抗性。因此,Ca(2+))通过 Ca(2+)/钙调蛋白抑制 E2A 来下调 pre-BCR 激活时 SLC 和 CD19 基因的表达。