首页> 美国卫生研究院文献>Plant Physiology >The Abscisic Acid-Responsive Kinase PKABA1 Interacts with a Seed-Specific Abscisic Acid Response Element-Binding Factor TaABF and Phosphorylates TaABF Peptide Sequences
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The Abscisic Acid-Responsive Kinase PKABA1 Interacts with a Seed-Specific Abscisic Acid Response Element-Binding Factor TaABF and Phosphorylates TaABF Peptide Sequences

机译:脱落酸响应激酶PKABA 1与种子特定的脱落酸响应元素结合因子TaABF和磷酸化TaABF肽序列相互作用。

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摘要

The abscisic acid (ABA)-induced protein kinase PKABA1 is present in dormant seeds and is a component of the signal transduction pathway leading to ABA-suppressed gene expression in cereal grains. We have identified a member of the ABA response element-binding factor (ABF) family of basic leucine zipper transcription factors from wheat (Triticum aestivum) that is specifically bound by PKABA1. This protein (TaABF) has highest sequence similarity to the Arabidopsis ABA response protein ABI5. In two-hybrid assays TaABF bound only to PKABA1, but not to a mutant version of PKABA1 lacking the nucleotide binding domain, suggesting that binding of TaABF requires prior binding of ATP as would be expected for binding of a protein substrate by a protein kinase. TaABF mRNA accumulated together with PKABA1 mRNA during wheat grain maturation and dormancy acquisition and TaABF transcripts increased transiently during imbibition of dormant grains. In contrast to PKABA1 mRNA, TaABF mRNA is seed specific and did not accumulate in vegetative tissues in response to stress or ABA application. PKABA1 produced in transformed cell lines was able to phosphorylate synthetic peptides representing three specific regions of TaABF. These data suggest that TaABF may serve as a physiological substrate for PKABA1 in the ABA signal transduction pathway during grain maturation, dormancy expression, and ABA-suppressed gene expression.
机译:脱落酸(ABA)诱导的蛋白激酶PKABA1存在于休眠种子中,并且是导致谷物中ABA抑制基因表达的信号转导途径的组成部分。我们已经确定了小麦(Triticum aestivum)的基本亮氨酸拉链转录因子的ABA反应元件结合因子(ABF)家族的成员,该家族被PKABA1特异性结合。该蛋白(TaABF)与拟南芥ABA反应蛋白ABI5具有最高的序列相似性。在两杂交试验中,TaABF仅与PKABA1结合,而与缺少核苷酸结合域的PKABA1突变体不结合,这表明TaABF的结合需要事先结合ATP,如蛋白激酶结合蛋白质底物所期望的那样。 TaABF mRNA和PKABA1 mRNA在小麦籽粒成熟和休眠获取过程中一起积累,而TaABF转录本在吸收休眠谷粒的过程中瞬时增加。与PKABA1 mRNA相比,TaABF mRNA具有种子特异性,不会因压力或ABA的使用而在营养组织中积聚。在转化的细胞系中产生的PKABA1能够磷酸化代表TaABF的三个特定区域的合成肽。这些数据表明TaABF可能在谷物成熟,休眠表达和ABA抑制的基因表达过程中充当ABA信号传导途径中PKABA1的生理底物。

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