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A novel family of proline/serine-rich proteins which are phospho-targets of stress-related mitogen-activated protein kinases differentially regulates growth and pathogen defense in Arabidopsis thaliana

机译:富含脯氨酸/丝氨酸的新型蛋白家族是应激相关的促丝裂原活化蛋白激酶的磷酸化靶标可差异调节拟南芥的生长和病原体防御

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摘要

The molecular actions of mitogen-activated protein kinases (MAPKs) are ultimately accomplished by the substrate proteins where phosphorylation affects their molecular properties and function(s), but knowledge regarding plant MAPK substrates is currently still fragmentary. Here, we uncovered a previously uncharacterized protein family consisting of three proline/serine-rich proteins (PRPs) that are substrates of stress-related MAPKs. We demonstrated the importance of a MAPK docking domain necessary for protein–protein interaction with MAPKs and consequently also for phosphorylation. The main phosphorylated site was mapped to a residue conserved between all three proteins, which when mutated to a non-phosphorylatable form, differentially affected their protein stability. Together with their distinct gene expression patterns, this differential accumulation of the three proteins upon phosphorylation probably contributes to their distinct function(s). Transgenic over-expression of PRP, the founding member, led to plants with enhanced resistance to Pseudomonas syringae pv. tomato DC3000. Older plants of the over-expressing lines have curly leaves and were generally smaller in stature. This growth phenotype was lost in plants expressing the phosphosite variant, suggesting a phosphorylation-dependent effect. Thus, this novel family of PRPs may be involved in MAPK regulation of plant development and / or pathogen resistance responses. As datamining associates PRP expression profiles with hypoxia or oxidative stress and PRP-overexpressing plants have elevated levels of reactive oxygen species, PRP may connect MAPK and oxidative stress signaling.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-017-0641-5) contains supplementary material, which is available to authorized users.
机译:丝裂原激活的蛋白激酶(MAPK)的分子作用最终由底物蛋白完成,其中磷酸化会影响其分子特性和功能,但是有关植物MAPK底物的知识目前仍是零碎的。在这里,我们发现了以前未知的蛋白质家族,该家族由三种富含脯氨酸/丝氨酸的蛋白质(PRP)组成,它们是应激相关MAPK的底物。我们证明了MAPK停靠域对于蛋白质与MAPK相互作用的必要性,因此对于磷酸化也很重要。主要的磷酸化位点被定位到所有三种蛋白质之间保守的残基,当突变为不可磷酸化的形式时,差异地影响了它们的蛋白质稳定性。连同它们独特的基因表达模式,这三种蛋白质在磷酸化后的这种差异积累可能有助于它们独特的功能。 PRP的转基因过表达是创始成员,导致植物对丁香假单胞菌pv的抗性增强。番茄DC3000。过表达系的较老植物叶片卷曲,通常身高较小。该生长表型在表达磷酸位点变体的植物中丢失,表明磷酸化依赖性作用。因此,该新颖的PRP家族可能参与植物发育和/或病原体抗性应答的MAPK调节。由于数据挖掘将PRP表达谱与缺氧或氧化胁迫相关联,并且过表达PRP的植物体内活性氧水平升高,因此PRP可能将MAPK与氧化应激信号联系起来。电子补充材料本文的在线版本(doi:10.1007 / s11103-017- 0641-5)包含补充材料,授权用户可以使用。

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