Molecular dissection of the pseudokinase ZED1 expands effector recognition to the tomato immune receptor ZAR1.

IF 6.5 1区 生物学 Q1 PLANT SCIENCES
Nathan Diplock, Maël Baudin, Xincheng Derek Xiang, Lung-Yu Liang, Weiwen Dai, James M Murphy, Isabelle S Lucet, Jana A Hassan, Jennifer D Lewis
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Abstract

The highly conserved angiosperm immune receptor HOPZ-ACTIVATED RESISTANCE 1 (ZAR1) is a bacterial pathogen recognition hub that mediates resistance by guarding host kinases for modification by pathogen effectors. The pseudokinase HOPZ-ETI DEFICIENT 1 (ZED1) is the only known ZAR1-guarded protein that interacts directly with a pathogen effector, HopZ1a, from the bacterial pathogen Pseudomonas syringae, making it a promising system for rational design of effector recognition for plant immunity. Here, we conducted an in-depth molecular analysis of ZED1. We generated a library of 164 random ZED1 mutants and identified 50 mutants that could not recognize the effector HopZ1a when transiently expressed in Nicotiana benthamiana. Based on our random mutants, we generated a library of 27 point mutants and found evidence of minor functional divergence between Arabidopsis (Arabidopsis thaliana) and N. benthamiana ZAR1 orthologs. We leveraged our point mutant library to identify regions in ZED1 critical for ZAR1 and HopZ1a interactions and identified two likely ZED1-HopZ1a binding conformations. We explored ZED1 nucleotide and cation binding activity and showed that ZED1 is a catalytically dead pseudokinase, functioning solely as an allosteric regulator upon effector recognition. We used our library of ZED1 point mutants to identify the ZED1 activation loop regions as the most likely cause of interspecies ZAR1-ZED1 incompatibility. Finally, we identified a mutation that abolished ZAR1-ZED1 interspecies incompatibility while retaining the ability to mediate HopZ1a recognition, which enabled recognition of HopZ1a through tomato (Solanum lycopersicum) ZAR1. This provides an example of expanded effector recognition through a ZAR1 ortholog from a non-model species.

假激酶 ZED1 的分子剖析扩大了对番茄免疫受体 ZAR1 的效应识别。
高度保守的被子植物免疫受体 HOPZ-ACTIVATED RESISTANCE 1(ZAR1)是一种细菌病原体识别中枢,它通过保护宿主激酶免受病原体效应物的修饰来介导抗性。伪激酶 HOPZ-ETI DEFICIENT 1 (ZED1) 是唯一已知的 ZAR1 保护蛋白,它能直接与细菌病原体丁香假单胞菌的病原体效应物 HopZ1a 相互作用,这使它成为合理设计植物免疫效应物识别的一个有前途的系统。在这里,我们对 ZED1 进行了深入的分子分析。我们生成了一个包含 164 个随机 ZED1 突变体的文库,并鉴定出 50 个突变体,这些突变体在烟草中瞬时表达时不能识别效应物 HopZ1a。在随机突变体的基础上,我们生成了一个包含 27 个点突变体的文库,并发现拟南芥(Arabidopsis thaliana)和烟曲霉 ZAR1 直向同源物之间存在微小功能差异的证据。我们利用点突变体文库确定了 ZED1 中 ZAR1 和 HopZ1a 相互作用的关键区域,并确定了两种可能的 ZED1-HopZ1a 结合构象。我们探索了 ZED1 的核苷酸和阳离子结合活性,结果表明 ZED1 是一种无催化的伪激酶,在效应物识别后仅发挥异位调节作用。我们利用我们的 ZED1 点突变体库确定了 ZED1 激活环区域是导致 ZAR1-ZED1 种间不相容的最可能原因。最后,我们发现了一种突变,这种突变在消除 ZAR1-ZED1 种间不相容性的同时保留了介导 HopZ1a 识别的能力,从而能够通过番茄(Solanum lycopersicum)ZAR1 识别 HopZ1a。这为通过非模式物种的 ZAR1 同源物扩大效应物识别提供了一个实例。
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来源期刊
Plant Physiology
Plant Physiology 生物-植物科学
CiteScore
12.20
自引率
5.40%
发文量
535
审稿时长
2.3 months
期刊介绍: Plant Physiology® is a distinguished and highly respected journal with a rich history dating back to its establishment in 1926. It stands as a leading international publication in the field of plant biology, covering a comprehensive range of topics from the molecular and structural aspects of plant life to systems biology and ecophysiology. Recognized as the most highly cited journal in plant sciences, Plant Physiology® is a testament to its commitment to excellence and the dissemination of groundbreaking research. As the official publication of the American Society of Plant Biologists, Plant Physiology® upholds rigorous peer-review standards, ensuring that the scientific community receives the highest quality research. The journal releases 12 issues annually, providing a steady stream of new findings and insights to its readership.
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