Structural Genomics Consortium, Universidade Estadual de Campinas - UNICAMP, Campinas, SP, 13083-886, Brazil.
Joint Research Center for Genomic Applied to Climate Change (UMIP-GenClima), Campinas, SP, 13083-875, Brazil.
BMC Plant Biol. 2020 Apr 15;20(1):158. doi: 10.1186/s12870-020-2328-3.
Plants reprogram metabolism and development to rapidly adapt to biotic and abiotic stress. Protein kinases play a significant role in this process by phosphorylating protein substrates that activate or inactivate signaling cascades that regulate cellular and metabolic adaptations. Despite their importance in plant biology, a notably small fraction of the plant kinomes has been studied to date.
In this report, we describe ZmDRIK1, a stress-responsive receptor-like pseudokinase whose expression is downregulated under water restriction. We show the structural features and molecular basis of the absence of ATP binding exhibited by ZmDRIK1. The ZmDRIK1 kinase domain lacks conserved amino acids that are essential for phosphorylation activity. The crystal structure of the ZmDRIK1 kinase domain revealed the presence of a spine formed by the side chain of the triad Leu, Tyr, and Leu that occludes the ATP binding pocket. Although ZmDRIK1 is unable to bind nucleotides, it does bind the small molecule ENMD-2076 which, in a cocrystal structure, revealed the potential to serve as a ZmDRIK1 inhibitor.
ZmDRIK1 is a novel receptor-like pseudokinase responsive to biotic and abiotic stress. The absence of ATP binding and consequently, the absence of phosphorylation activity, was proven by the crystal structure of the apo form of the protein kinase domain. The expression profiling of the gene encoding ZmDRIK1 suggests this kinase may play a role in downregulating the expression of stress responsive genes that are not necessary under normal conditions. Under biotic and abiotic stress, ZmDRIK1 is down-regulated to release the expression of these stress-responsive genes.
植物通过快速适应生物和非生物胁迫来重新编程代谢和发育。蛋白激酶通过磷酸化激活或失活信号级联反应的蛋白底物,在这个过程中发挥重要作用,这些信号级联反应调节细胞和代谢适应。尽管它们在植物生物学中具有重要意义,但迄今为止,只有一小部分植物激酶组得到了研究。
在本报告中,我们描述了 ZmDRIK1,一种应激响应的受体样假激酶,其表达在水分限制下下调。我们展示了 ZmDRIK1 缺乏 ATP 结合的结构特征和分子基础。ZmDRIK1 激酶结构域缺乏对磷酸化活性至关重要的保守氨基酸。ZmDRIK1 激酶结构域的晶体结构显示存在由三肽 Leu、Tyr 和 Leu 的侧链形成的脊,该脊阻塞了 ATP 结合口袋。尽管 ZmDRIK1 不能结合核苷酸,但它确实可以结合小分子 ENMD-2076,在共晶结构中,揭示了作为 ZmDRIK1 抑制剂的潜力。
ZmDRIK1 是一种新型的受体样假激酶,对生物和非生物胁迫有反应。ATP 结合的缺失,以及因此磷酸化活性的缺失,通过蛋白激酶结构域的 apo 形式的晶体结构得到了证明。编码 ZmDRIK1 的基因的表达谱表明,这种激酶可能在下调在正常条件下不需要的应激响应基因的表达中发挥作用。在生物和非生物胁迫下,ZmDRIK1 的表达下调,从而释放这些应激响应基因的表达。