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首页> 外文期刊>Nucleic Acids Research >The Arabidopsis homologs of trithorax (ATX1) and enhancer of zeste (CLF) establish 'bivalent chromatin marks' at the silent AGAMOUS locus
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The Arabidopsis homologs of trithorax (ATX1) and enhancer of zeste (CLF) establish 'bivalent chromatin marks' at the silent AGAMOUS locus

机译:三胸草(ATX1)和zeste增强子(CLF)的拟南芥同源物在沉默的AGAMOUS基因座上建立了“二价染色质标记”。

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摘要

Tightly balanced antagonism between the Polycomb group (PcG) and the Trithorax group (TrxG) complexes maintain Hox expression patterns in Drosophila and murine model systems. Factors belonging to the PcG/TrxG complexes control various processes in plants as well but whether they participate in mechanisms that antagonize, balance or maintain each others effects at a particular gene locus is unknown. CURLY LEAF (CLF), an Arabidopsis homolog of enhancer of zeste (EZ) and the ARABIDOPSIS HOMOLOG OF TRITHORAX (ATX1) control the expression of the flower homeotic gene AGAMOUS (AG). Disrupted ATX1 or CLF function results in misexpression of AG, recognizable phenotypes and loss of H3K4me3 or H3K27me3 histone H3-tail marks, respectively. A novel idea suggested by our results here, is that PcG and TrxG complexes function as a specific pair generating bivalent chromatin marks at the silent AG locus. Simultaneous loss of ATX1 and CLF restored AG repression and normalized leaf phenotypes. At the molecular level, disrupted ATX1 and CLF functions did not lead to erasure of the CLF- and ATX1-generated epigenetic marks, as expected: instead, in the double mutants, H3K27me3 and H3K4me3 tags were partially restored. We demonstrate that ATX1 and CLF physically interact linking mechanistically the observed effects.
机译:Polycomb组(PcG)和Trithorax组(TrxG)复合物之间的紧密平衡拮抗作用在果蝇和鼠模型系统中维持Hox表达模式。属于PcG / TrxG复合体的因子也控制着植物的各种过程,但是尚不清楚它们是否参与在特定基因位点拮抗,平衡或维持彼此作用的机制。 CURLY LEAF(CLF)是zeste增强子的拟南芥同源物(EZ)和TRITHORAX的ARABIDOPSIS同源物(ATX1)控制花同源基因AGAMOUS(AG)的表达。中断的ATX1或CLF功能分别导致AG的错误表达,可识别的表型和H3K4me3或H3K27me3组蛋白H3尾标记的丢失。我们的结果在这里提出了一个新颖的想法,即PcG和TrxG复合物在沉默的AG位点起特定的配对作用,产生二价染色质标记。同时损失ATX1和CLF恢复了AG抑制和标准化的叶表型。在分子水平上,如预期的那样,破坏的ATX1和CLF功能不会导致CLF和ATX1生成的表观遗传标记的消失:相反,在双重突变体中,H3K27me3和H3K4me3标签已部分恢复。我们证明了ATX1和CLF物理相互作用机械地观察到的影响。

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