Sakaguchi Shinya, Hainberger Daniela, Tizian Caroline, Tanaka Hirokazu, Okuda Tsukasa, Taniuchi Ichiro, Ellmeier Wilfried
Division of Immunobiology, Institute of Immunology, Center for Pathophysiology, Infectiology and Immunology, Medical University of Vienna, 1090 Vienna, Austria;
Laboratory for Transcriptional Regulation, RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa 230-0045, Japan; and.
J Immunol. 2015 Sep 15;195(6):2879-87. doi: 10.4049/jimmunol.1500387. Epub 2015 Aug 7.
Th-inducing Pox virus and zinc finger/Krüppel-like factor (ThPOK) is a key commitment factor for CD4(+) lineage T cells and is essential for the maintenance of CD4 lineage integrity; thus, the expression of ThPOK has to be tightly controlled. In this article, we demonstrate that Myc-associated zinc finger-related factor (MAZR) and Runt-related transcription factor 1 (Runx1) together repressed ThPOK in preselection double-positive thymocytes, whereas MAZR acted in synergy with Runx3 in the repression of ThPOK in CD8(+) T cells. Furthermore, MAZR-Runx1 and MAZR-Runx3 double-mutant mice showed enhanced derepression of Cd4 in double-negative thymocytes and in CD8(+) T cells in comparison with Runx1 or Runx3 single-deficient mice, respectively, indicating that MAZR modulates Cd4 silencing. Thus, our data demonstrate developmental stage-specific synergistic activities between MAZR and Runx/core-binding factor β (CBFβ) complexes. Finally, retroviral Cre-mediated conditional deletion of MAZR in peripheral CD8(+) T cells led to the derepression of ThPOK, thus showing that MAZR is also part of the molecular machinery that maintains a repressed state of ThPOK in CD8(+) T cells.
诱导辅助性T细胞的痘病毒与锌指/Krüppel样因子(ThPOK)是CD4(+)谱系T细胞的关键决定因子,对于维持CD4谱系完整性至关重要;因此,ThPOK的表达必须受到严格调控。在本文中,我们证明了Myc相关锌指相关因子(MAZR)和Runt相关转录因子1(Runx1)共同在预选双阳性胸腺细胞中抑制ThPOK,而MAZR在CD8(+) T细胞中与Runx3协同作用抑制ThPOK。此外,与Runx1或Runx3单基因缺陷小鼠相比,MAZR-Runx1和MAZR-Runx3双基因敲除小鼠在双阴性胸腺细胞和CD8(+) T细胞中分别显示出Cd4去抑制增强,表明MAZR调节Cd4沉默。因此,我们的数据证明了MAZR与Runx/核心结合因子β(CBFβ)复合物之间存在发育阶段特异性的协同活性。最后,逆转录病毒Cre介导的外周CD8(+) T细胞中MAZR的条件性缺失导致ThPOK去抑制,从而表明MAZR也是维持CD8(+) T细胞中ThPOK抑制状态的分子机制的一部分。