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The PHD-finger module of the Arabidopsis thaliana defense regulator EDM2 can recognize triply modified histone H3 peptides

机译:拟南芥防御调节剂EDM2的PHD手指模块可以识别三重修饰的组蛋白H3肽

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摘要

Recently we reported that the Arabidopsis thaliana PHD-finger protein EDM2 (enhanced downy mildew 2) impacts disease resistance by affecting levels of di-methylated lysine 9 of histone H3 (H3K9me2) at an alternative polyadenylation site in the immune receptor gene RPP7. EDM2-dependent modulation of this post-translational histone modification (PHM) shifts the balance between full-length RPP7 transcripts and prematurely polyadenylated transcripts, which do not encode the RPP7 protein. Our previous work genetically linked, for the first time, PHMs to alternative polyadenylation and established EDM2 as a critical component mediating PHM-dependent polyadenylation control. However, how EDM2 is recruited to its genomic target sites and how it affects H3K9me2 levels is unknown. Here we show the PHD-finger module of EDM2 to recognize histone H3 bearing certain combinations of 3 distinct PHMs. Our results suggest that targeting of EDM2 to specific genomic regions is mediated by the histone-binding selectivity of its PHD-finger domain.
机译:最近,我们报道了拟南芥PHD手指蛋白EDM2(增强的霜霉病2)通过影响免疫受体基因RPP7中另一个聚腺苷酸化位点处组蛋白H3(H3K9me2)的二甲基赖氨酸9的水平来影响疾病抵抗力。翻译后组蛋白修饰(PHM)的依赖EDM2的调节改变了全长RPP7转录物与不编码RPP7蛋白的过早聚腺苷酸转录物之间的平衡。我们以前的工作首次将PHM与替代的聚腺苷酸遗传相连,并将EDM2建立为介导PHM依赖的聚腺苷酸控制的关键组分。但是,尚不清楚如何将EDM2募集到其基因组目标位点以及它如何影响H3K9me2水平。在这里,我们显示了EDM2的PHD-finger模块,以识别带有3种不同PHM某些组合的组蛋白H3。我们的结果表明,EDM2靶向特定基因组区域是由其PHD指结构域的组蛋白结合选择性介导的。

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