Cauchy Pierre, Maqbool Muhammad A, Zacarias-Cabeza Joaquin, Vanhille Laurent, Koch Frederic, Fenouil Romain, Gut Marta, Gut Ivo, Santana Maria A, Griffon Aurélien, Imbert Jean, Moraes-Cabé Carolina, Bories Jean-Christophe, Ferrier Pierre, Spicuglia Salvatore, Andrau Jean-Christophe
CIML CNRS UMR7280, Case 906, Campus de Luminy, Marseille F-13009, France CIML INSERM U1104, Case 906, Campus de Luminy, Marseille F-13009, France Aix-Marseille University, 58 Boulevard Charles Livon, Marseille F-13284, France Inserm U1090, Technological Advances for Genomics and Clinics (TAGC), Marseille F-13009, France Aix-Marseille University UMR-S 1090, TAGC, Marseille F-13009, France.
Institut de Génétique Moléculaire de Montpellier, CNRS UMR5535, 1919 Route de Mende, Montpellier F-34293, France.
Nucleic Acids Res. 2016 May 5;44(8):3567-85. doi: 10.1093/nar/gkv1475. Epub 2015 Dec 15.
Ets1 is a sequence-specific transcription factor that plays an important role during hematopoiesis, and is essential for the transition of CD4(-)/CD8(-) double negative (DN) to CD4(+)/CD8(+) double positive (DP) thymocytes. Using genome-wide and functional approaches, we investigated the binding properties, transcriptional role and chromatin environment of Ets1 during this transition. We found that while Ets1 binding at distal sites was associated with active genes at both DN and DP stages, its enhancer activity was attained at the DP stage, as reflected by levels of the core transcriptional hallmarks H3K4me1/3, RNA Polymerase II and eRNA. This dual, stage-specific ability reflected a switch from non-T hematopoietic toward T-cell specific gene expression programs during the DN-to-DP transition, as indicated by transcriptome analyses of Ets1(-/-) thymic cells. Coincidentally, Ets1 associates more specifically with Runx1 in DN and with TCF1 in DP cells. We also provide evidence that Ets1 predominantly binds distal nucleosome-occupied regions in DN and nucleosome-depleted regions in DP. Finally and importantly, we demonstrate that Ets1 induces chromatin remodeling by displacing H3K4me1-marked nucleosomes. Our results thus provide an original model whereby the ability of a transcription factor to bind nucleosomal DNA changes during differentiation with consequences on its cognate enhancer activity.
Ets1是一种序列特异性转录因子,在造血过程中发挥重要作用,对于CD4(-)/CD8(-)双阴性(DN)胸腺细胞向CD4(+)/CD8(+)双阳性(DP)胸腺细胞的转变至关重要。我们使用全基因组和功能方法,研究了Ets1在此转变过程中的结合特性、转录作用和染色质环境。我们发现,虽然Ets1在远端位点的结合与DN和DP阶段的活性基因相关,但其增强子活性在DP阶段才得以实现,这由核心转录标志H3K4me1/3、RNA聚合酶II和eRNA的水平反映出来。这种双重的、阶段特异性的能力反映了在DN向DP转变过程中,从非T造血向T细胞特异性基因表达程序的转变,这由Ets1(-/-)胸腺细胞的转录组分析表明。巧合的是,Ets1在DN细胞中与Runx1更特异性地结合,在DP细胞中与TCF1结合。我们还提供证据表明,Ets1在DN中主要结合远端核小体占据区域,在DP中结合核小体缺失区域。最后且重要的是,我们证明Ets1通过取代H3K4me1标记的核小体诱导染色质重塑。因此,我们的结果提供了一个原始模型,即转录因子结合核小体DNA的能力在分化过程中发生变化,对其同源增强子活性产生影响。