Nie Hui, Yao Xin, Maika Shanna D, Tucker Philip W
Section of Molecular Genetics and Microbiology and Institute for Cellular and Molecular Biology, University of Texas at Austin, 1 University Station A5000, Austin, TX 78712-0162, United States.
Mol Immunol. 2008 Nov;46(1):207-11. doi: 10.1016/j.molimm.2008.07.007. Epub 2008 Aug 21.
Intrathymic signals induce the differentiation of immature CD4(+)CD8(+) double positive (DP) thymocytes into mature CD4(+) or CD8(+) single positive (SP) T cells. The transcriptional mechanism by which CD8 lineage is determined is not fully understood. The best evidence, which favors the kinetic signaling/coreceptor reversal model, indicates that signaled DP thymocytes terminate CD8 transcription prior to their subsequent re-initiation of CD8 transcription and ultimate differentiation into CD8SP T cells. We and others have shown that CD8 lineage commitment is severely perturbed in mice in which expression of the transcription factor SATB1 is either conventionally knocked out or T cell-specifically knocked down. Here, we demonstrate that, as with normal thymocytes, cultured SATB1-deficient DP thymocytes inactivate CD8 coreceptor transcription following receipt of signals (PMA plus ionomycin) that mimic TCR-mediated positive selection. However, this terminated CD8 transcription is not re-initiated by signals (IL-7) conducive to CD8 differentiation in SATB1-deficient DP. We show that SATB1 specifically binds to a cis-regulatory element within the CD8 enhancer (E8(III)) known to be required for coreceptor reversal. A requirement in CD8 coreceptor reversal identifies SATB1 as an essential trans-regulator of CD8 lineage fate, whose action may be mediated via recruitment to the E8(III) DP enhancer.
胸腺内信号诱导未成熟的CD4(+)CD8(+)双阳性(DP)胸腺细胞分化为成熟的CD4(+)或CD8(+)单阳性(SP)T细胞。决定CD8谱系的转录机制尚未完全阐明。最支持动力学信号/共受体逆转模型的证据表明,接收到信号的DP胸腺细胞在随后重新启动CD8转录并最终分化为CD8SP T细胞之前终止CD8转录。我们和其他人已经表明,在转录因子SATB1的表达被常规敲除或T细胞特异性敲低的小鼠中,CD8谱系的定向分化受到严重干扰。在这里,我们证明,与正常胸腺细胞一样,培养的SATB1缺陷型DP胸腺细胞在接收到模拟TCR介导的阳性选择的信号(佛波酯加离子霉素)后会使CD8共受体转录失活。然而,在SATB1缺陷型DP中,这种终止的CD8转录不会被有利于CD8分化的信号(白细胞介素-7)重新启动。我们表明,SATB1特异性结合CD8增强子(E8(III))内的一个顺式调节元件,已知该元件是共受体逆转所必需的。CD8共受体逆转的需求将SATB1确定为CD8谱系命运的关键反式调节因子,其作用可能是通过招募到E8(III) DP增强子来介导的。