Gonçalves Dias Márcia, Dharmasena Thakshila, Gonzalez-Ferrer Carmen, Maika Jan Eric, Miguel Virginia Natali, Dou Ruoqi, Rodriguez Gallo Maria Camila, Bredow Melissa, Siegel Kristen Rose, Uhrig R Glen, Simon Rüdiger, Monaghan Jacqueline
Department of Biology, Queen's University, Kingston, ON, Canada.
Institute for Developmental Genetics, Heinrich Heine University, Düsseldorf, Germany.
J Exp Bot. 2025 Apr 9;76(6):1553-1568. doi: 10.1093/jxb/erae486.
Protein kinases are key components of multiple cell signaling pathways. Several receptor-like cytoplasmic kinases (RLCKs) have demonstrated roles in immune and developmental signaling across various plant species, making them of interest in the study of phosphorylation-based signal relay. Here, we present our investigation of a subgroup of RLCKs in Arabidopsis thaliana. Specifically, we focus on subgroup VIII RLCKs: MAZ and its paralog CARK6, as well as CARK7 and its paralog CARK9. We found that both MAZ and CARK7 associate with the calcium-dependent protein kinase CPK28 in planta and, furthermore, that CPK28 phosphorylates both MAZ and CARK7 on multiple residues in areas that are known to be critical for protein kinase activation. Genetic analysis suggested redundant roles for MAZ and CARK6 as negative regulators of the immune-triggered oxidative burst. We provide evidence that supports homo- and heterodimerization between CARK7 and MAZ, which may be a general feature of this subgroup. Multiple biochemical experiments indicated that neither MAZ nor CARK7 demonstrate catalytic protein kinase activity in vitro. Interestingly, we found that a mutant variant of MAZ incapable of protein kinase activity can complement maz-1 mutants, suggesting non-catalytic roles of MAZ in planta. Overall, our study identifies subgroup VIII RLCKs as new players in Arabidopsis immune signaling and highlights the importance of non-catalytic functions of protein kinases.
蛋白激酶是多种细胞信号通路的关键组成部分。几种类受体细胞质激酶(RLCKs)已在多种植物物种的免疫和发育信号传导中发挥作用,这使得它们成为基于磷酸化的信号传递研究的热点。在此,我们展示了对拟南芥中RLCKs一个亚组的研究。具体而言,我们聚焦于第八亚组RLCKs:MAZ及其旁系同源物CARK6,以及CARK7及其旁系同源物CARK9。我们发现,在植物体内MAZ和CARK7均与钙依赖性蛋白激酶CPK28相互作用,此外,CPK28在已知对蛋白激酶激活至关重要的区域的多个残基上使MAZ和CARK7磷酸化。遗传分析表明,MAZ和CARK6作为免疫触发的氧化爆发的负调节因子具有冗余作用。我们提供的证据支持CARK7和MAZ之间的同二聚化和异二聚化,这可能是该亚组的一个普遍特征。多项生化实验表明,MAZ和CARK7在体外均不表现出催化性蛋白激酶活性。有趣的是,我们发现一个无蛋白激酶活性的MAZ突变变体能够互补maz - 1突变体,这表明MAZ在植物体内具有非催化作用。总体而言,我们的研究确定了第八亚组RLCKs是拟南芥免疫信号传导中的新参与者,并突出了蛋白激酶非催化功能的重要性。