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Two Alternative Splicing Variants of AtERF73/HRE1, HRE1α and HRE1β, Have Differential Transactivation Activities in Arabidopsis

机译:Aterf73 / hre1,hre1α和hre1β的两种替代拼接变体,具有拟南芥的差异转移活性

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摘要

AtERF73/HRE1 is an AP2/ERF transcription factor in Arabidopsis and has two distinct alternative splicing variants, HRE1α and HRE1β. In this study, we examined the differences between the molecular functions of HRE1α and HRE1β. We found that HRE1α and HRE1β are both involved in hypoxia response and root development and have transactivation activity. Two conserved motifs in the C-terminal region of HRE1α and HRE1β, EELL and LWSY-like, contributed to their transactivation activity, specifically the four E residues in the EELL motif and the MGLWS amino acid sequence at the end of the LWSY-like motif. The N-terminal region of HRE1β also showed transactivation activity, mediated by the VDDG motif, whereas that of HRE1α did not. The transactivation activity of HRE1β was stronger than that of HRE1α in Arabidopsis protoplasts. Both transcription factors transactivated downstream genes via the GCC box. RNA-sequencing analysis further supported that both HRE1α and HRE1β might regulate gene expression associated with the hypoxia stress response, although they may transactivate different subsets of genes in downstream pathways. Our results, together with previous studies, suggested that HRE1α and HRE1β differentially transactivate downstream genes in hypoxia response and root development in Arabidopsis.
机译:AtERF73 / HRE1是在拟南芥的AP2 / ERF转录因子和具有两个不同的可变剪接变体,HRE1α和HRE1β。在这项研究中,我们研究了HRE1α和HRE1β的分子功能之间的差异。我们发现,HRE1α和HRE1β均参与了缺氧反应和根系发育,并具有激活能力。在HRE1α和HRE1β,EELL和的C末端区域中的两个保守基序LWSY状,促成了它们的反式激活活性,特别是在EELL基序中的四个专残基和MGLWS在的LWSY样基序的末端氨基酸序列。 HRE1β的N-末端区域也表现出反式激活活性,由VDDG基序介导的,而其HRE1α的没有。 HRE1β的激活能力比拟南芥原生质体是HRE1α强。这两个转录因子通过GCC盒反式激活下游基因。 RNA测序分析进一步支持了HRE1α和HRE1β都可能通过调节与低氧应激反应有关的基因的表达,尽管它们可以在下游途径反式激活的基因的不同子集。我们的研究结果,与以往的研究一起,表明HRE1α和HRE1β差异式激活拟南芥中缺氧反应和根系发育下游基因。

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