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EAR motif-mediated transcriptional repression in plants: An underlying mechanism for epigenetic regulation of gene expression

机译:EAR基序介导的植物转录抑制:基因表达的表观遗传调控的潜在机制

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摘要

Ethylene-responsive element binding factor-associated amphiphilic repression (EAR) motif-mediated transcriptional repression is emerging as one of the principal mechanisms of plant gene regulation. The EAR motif, defined by the consensus sequence patterns of either LxLxL or DLN xxP, is the most predominant form of transcriptional repression motif so far identified in plants. Additionally, this active repression motif is highly conserved in transcriptional regulators known to function as negative regulators in a broad range of developmental and physiological processes across evolutionarily diverse plant species. Recent discoveries of co-repressors interacting with EAR motifs, such as TO PLESS (TPL) and AtSA P18, have begun to unravel the mechanisms of EAR motif-mediated repression. The demonstration of genetic interaction between mutants of TPL and AtHDA 19, co-complex formation between TPL-related 1 (TPR1) and AtHDA 19, as well as direct physical interaction between AtSA P18 and AtHDA 19 support a model where EAR repressors, via recruitment of chromatin remodeling factors, facilitate epigenetic regulation of gene expression. Here, we discuss the biological significance of EAR -mediated gene regulation in the broader context of plant biology and present literature evidence in support of a model for EAR motif-mediated repression via the recruitment and action of chromatin modifiers. Additionally, we discuss the possible influences of phosphorylation and ubiquitination on the function and turnover of EAR repressors.
机译:乙烯反应元件结合因子相关的两亲阻抑(EAR)基序介导的转录阻抑正在成为植物基因调控的主要机制之一。由LxLxL或DLN xxP的共有序列模式定义的EAR基序是迄今为止在植物中鉴定出的转录抑制基序的最主要形式。另外,这种活性抑制基序在转录调节剂中高度保守,已知该转录调节剂在进化上不同的植物物种的广泛发育和生理过程中起负调节剂的作用。与EAR基序相互作用的共抑制子的最新发现,例如TO PLESS(TPL)和AtSA P18,已经开始揭示EAR基序介导的抑制机制。 TPL和AtHDA 19突变体之间的遗传相互作用,TPL相关1(TPR1)和AtHDA 19之间共复合物的形成以及AtSA P18和AtHDA 19之间直接物理相互作用的证明支持了EAR阻遏物通过募集的模型染色质重塑因子,促进基因表达的表观遗传调控。在这里,我们讨论了在更广泛的植物生物学背景下EAR介导的基因调控的生物学意义,并提供了文献证据来支持通过染色质修饰剂的募集和作用实现EAR介导的抑制模型。此外,我们讨论了磷酸化和泛素化对EAR阻遏物的功能和更新的可能影响。

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