Epigenetics and Stem Cell Biology Laboratory, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, Durham, NC, 27709, USA.
Institute of Human Genetics, CNRS, University of Montpellier, Montpellier, 34396, France.
Nat Commun. 2019 Jul 11;10(1):3072. doi: 10.1038/s41467-019-10905-7.
Faithful transcription initiation is critical for accurate gene expression, yet the mechanisms underlying specific transcription start site (TSS) selection in mammals remain unclear. Here, we show that the histone-fold domain protein NF-Y, a ubiquitously expressed transcription factor, controls the fidelity of transcription initiation at gene promoters in mouse embryonic stem cells. We report that NF-Y maintains the region upstream of TSSs in a nucleosome-depleted state while simultaneously protecting this accessible region against aberrant and/or ectopic transcription initiation. We find that loss of NF-Y binding in mammalian cells disrupts the promoter chromatin landscape, leading to nucleosomal encroachment over the canonical TSS. Importantly, this chromatin rearrangement is accompanied by upstream relocation of the transcription pre-initiation complex and ectopic transcription initiation. Further, this phenomenon generates aberrant extended transcripts that undergo translation, disrupting gene expression profiles. These results suggest NF-Y is a central player in TSS selection in metazoans and highlight the deleterious consequences of inaccurate transcription initiation.
忠实的转录起始对于准确的基因表达至关重要,但哺乳动物中特定转录起始位点(TSS)选择的机制仍不清楚。在这里,我们表明组蛋白折叠域蛋白 NF-Y,一种广泛表达的转录因子,控制着小鼠胚胎干细胞中基因启动子转录起始的保真度。我们报告说,NF-Y 使 TSS 上游区域保持在核小体缺失状态,同时防止这个可及区域发生异常和/或异位转录起始。我们发现,哺乳动物细胞中 NF-Y 结合的缺失破坏了启动子染色质景观,导致核小体侵入规范的 TSS。重要的是,这种染色质重排伴随着转录起始前复合物的上游重定位和异位转录起始。此外,这种现象产生了经历翻译的异常扩展转录本,从而破坏基因表达谱。这些结果表明 NF-Y 是后生动物 TSS 选择的核心参与者,并强调了转录起始不准确的有害后果。