首页> 美国卫生研究院文献>Genes >Impact of Alternatively Polyadenylated Isoforms of ETHYLENE RESPONSE FACTOR4 with Activator and Repressor Function on Senescence in Arabidopsis thaliana L.
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Impact of Alternatively Polyadenylated Isoforms of ETHYLENE RESPONSE FACTOR4 with Activator and Repressor Function on Senescence in Arabidopsis thaliana L.

机译:具有激活和阻遏功能的乙烯反应因子4的多腺苷酸亚型对拟南芥衰老的影响。

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摘要

Leaf senescence is highly regulated by transcriptional reprogramming, implying an important role for transcriptional regulators. ETHYLENE RESPONSE FACTOR4 (ERF4) was shown to be involved in senescence regulation and to exist in two different isoforms due to alternative polyadenylation of its pre-mRNA. One of these isoforms, ERF4-R, contains an ERF-associated amphiphilic repression (EAR) motif and acts as repressor, whereas the other form, ERF4-A, is lacking this motif and acts as activator. Here, we analyzed the impact of these isoforms on senescence. Both isoforms were able to complement the delayed senescence phenotype of the erf4 mutant with a tendency of ERF4-A for a slightly better complementation. However, overexpression led to accelerated senescence of 35S:ERF4-R plants but not of 35S:ERF4-A plants. We identified CATALASE3 (CAT3) as direct target gene of ERF4 in a yeast-one-hybrid screen. Both isoforms directly bind to the CAT3 promoter but have antagonistic effects on gene expression. The ratio of ERF4-A to ERF4-R mRNA changed during development, leading to a complex age-dependent regulation of CAT3 activity. The RNA-binding protein FPA shifted the R/A-ratio and fpa mutants are pointing towards a role of alternative polyadenylation regulators in senescence.
机译:叶片的衰老受到转录重编程的高度调控,这暗示着转录调控因子的重要作用。乙烯响应因子4(ERF4)被证明参与衰老调节,并且由于其前mRNA的多聚腺苷酸化作用而存在两种不同的同工型。这些同工型之一ERF4-R包含一个与ERF相关的两亲性抑制(EAR)基序并充当阻遏物,而另一种形式ERF4-A则缺少该基序并充当活化剂。在这里,我们分析了这些同工型对衰老的影响。两种同工型都能够补充erf4突变体的延迟衰老表型,并具有ERF4-A趋于稍好互补的趋势。但是,过表达导致35S:ERF4-R植物的加速衰老,而不是35S:ERF4-A植物的加速衰老。我们在酵母一杂交筛选中鉴定了CATALASE3(CAT3)作为ERF4的直接靶基因。两种同工型都直接与CAT3启动子结合,但对基因表达具有拮抗作用。 ERF4-A与ERF4-R mRNA的比例在发育过程中发生了变化,导致了对CAT3活性的复杂的年龄依赖性调节。 RNA结合蛋白FPA改变了R / A比率,而fpa突变体则指向了替代性聚腺苷酸调节剂在衰老中的作用。

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