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首页> 外文期刊>Nature Communications >The repressive role of Arabidopsis H2A.Z in transcriptional regulation depends on AtBMI1 activity
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The repressive role of Arabidopsis H2A.Z in transcriptional regulation depends on AtBMI1 activity

机译:拟南芥H2A.z在转录调节中的抑制作用取决于ATBMI1活性

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H2A.Z variant has emerged as a critical player in regulating plant responses to environment; however, the mechanism by which H2A.Z mediates this regulation remains unclear. In Arabidopsis, H2A.Z has been proposed to have opposite effects on transcription depending on its localization within the gene. These opposite roles have been assigned by correlating gene expression and H2A.Z enrichment analyses but without considering the impact of possible H2A.Z post-translational modifications. Here, we show that H2A.Z can be monoubiquitinated by the PRC1 components AtBMI1A/B/C. The incorporation of this modification is required for H2A.Z-mediated transcriptional repression through a mechanism that does not require PRC2 activity. Our data suggest that the dual role of H2A.Z in regulating gene expression depends on the modification that it carries, while the levels of H2A.Z within genes depend on the transcriptional activity.
机译:H2A.Z Variant已成为调节对环境的植物反应的关键球员;然而,H2A.Z介导该监管的机制仍不清楚。在拟南芥中,已经提出了H2A.Z对转录的影响,这取决于其在基因内的本地化。通过关联基因表达和H2A.Z富集分析,但不考虑可能的H2A.Z后翻译后修改的影响,已经通过了这些相反的作用。在这里,我们表明H2A.Z可以由ATBMI1A / B / C的PRC1分量单位。通过不需要PRC2活性的机制来掺入H2A.Z介导的转录抑制所需的掺入该修饰。我们的数据表明,H2A.z在调节基因表达中的双重作用取决于它携带的修饰,而基因内的H2A.Z水平取决于转录活性。

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