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Auxin sensing is a property of an unstructured domain in the Auxin Response Factor ETTIN of Arabidopsis thaliana

机译:生长素感测是拟南芥生长素响应因子ETTIN中非结构域的性质

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摘要

The plant hormone auxin regulates numerous aspects of the plant life cycle. Auxin signalling is mediated by auxin response factors (ARFs) that dimerise with modulating Aux/IAA repressors. ARF3 (ETTIN or ETT) is atypical as it does not interact with Aux/IAA repressors. It is proposed to be a non-canonical auxin sensor, regulating diverse functions essential for development. This sensing ability relies on a unique C-terminal ETT specific domain (ES domain). Alignments of ETT orthologues across the angiosperm phylum revealed that the length and sequence identities of ES domains are poorly conserved. Computational predictors suggested the ES domains to be intrinsically disordered, explaining their tolerance of insertions, deletions and mutations during evolution. Nevertheless, five highly conserved short linear motifs were identified suggesting functional significance. High-throughput library screening identified an almost full-length soluble ES domain that did not bind auxin directly, but exhibited a dose-dependent response in a yeast two-hybrid system against the Arabidopsis INDEHISCENT (IND) transcription factor. Circular dichroism confirmed the domain was disordered. The identification and purification of this domain opens the way to the future characterisation of the ETT auxin-sensing mechanism in planta and an improved understanding of auxin-mediated regulation.
机译:植物激素生长素调节植物生命周期的许多方面。生长素信号转导是由生长素应答因子(ARF)介导的,该因子通过调节Aux / IAA阻遏物而二聚化。 ARF3(ETTIN或ETT)是不典型的,因为它不与Aux / IAA阻遏物相互作用。有人提出它是一种非规范的生长素传感器,它调节了开发所必需的各种功能。这种感测能力依赖于独特的C端ETT特定域(ES域)。 ETT直向同源物在被子植物门上的比对表明,ES结构域的长度和序列同一性保守性很差。计算预测因子表明ES域本质上是无序的,解释了它们在进化过程中对插入,缺失和突变的耐受性。然而,鉴定出五个高度保守的短线性基序,提示其功能重要性。高通量文库筛选鉴定出几乎全长的可溶性ES结构域,该结构域不直接结合生长素,但在酵母双杂交系统中对拟南芥INDEHISCENT(IND)转录因子表现出剂量依赖性反应。圆二色性证实该域是无序的。该结构域的鉴定和纯化为今后在植物中表征ETT生长素传感机制和增进对生长素介导的调控的理解开辟了道路。

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