Department of Microbiology and Immunobiology, Harvard Medical School, Boston, Massachusetts, United States of America.
PLoS One. 2012;7(6):e40032. doi: 10.1371/journal.pone.0040032. Epub 2012 Jun 29.
CD28 is the major costimulatory receptor required for activation of naïve T cells, yet CD28 costimulation affects the expression level of surprisingly few genes over those altered by TCR stimulation alone. Alternate splicing of genes adds diversity to the proteome and contributes to tissue-specific regulation of genes. Here we demonstrate that CD28 costimulation leads to major changes in alternative splicing during activation of naïve T cells, beyond the effects of TCR alone. CD28 costimulation affected many more genes through modulation of alternate splicing than by modulation of transcription. Different families of biological processes are over-represented among genes alternatively spliced in response to CD28 costimulation compared to those genes whose transcription is altered, suggesting that alternative splicing regulates distinct biological effects. Moreover, genes dependent upon hnRNPLL, a global regulator of splicing in activated T cells, were enriched in T cells activated through TCR plus CD28 as compared to TCR alone. We show that hnRNPLL expression is dependent on CD28 signaling, providing a mechanism by which CD28 can regulate splicing in T cells and insight into how hnRNPLL can influence signal-induced alternative splicing in T cells. The effects of CD28 on alternative splicing provide a newly appreciated means by which CD28 can regulate T cell responses.
CD28 是激活初始 T 细胞所需的主要共刺激受体,但 CD28 共刺激对基因表达水平的影响远小于 TCR 单独刺激所改变的基因。基因的选择性剪接为蛋白质组增加了多样性,并有助于组织特异性基因调控。在这里,我们证明 CD28 共刺激在激活初始 T 细胞期间导致选择性剪接的重大变化,超出 TCR 单独的影响。CD28 共刺激通过调节选择性剪接影响的基因比通过调节转录影响的基因多得多。与转录改变的基因相比,响应 CD28 共刺激而选择性剪接的基因的不同家族的生物过程明显过多,这表明选择性剪接调节不同的生物学效应。此外,在 TCR 加 CD28 激活的 T 细胞中,hnRNPLL(一种激活的 T 细胞中剪接的全局调节剂)依赖性基因比仅 TCR 激活的基因更丰富。我们表明 hnRNPLL 的表达依赖于 CD28 信号,为 CD28 如何调节 T 细胞中的剪接提供了一种机制,并深入了解 hnRNPLL 如何影响 T 细胞中信号诱导的选择性剪接。CD28 对选择性剪接的影响提供了一种新的认识,即 CD28 可以调节 T 细胞反应。