Computational Bioscience Research Centre, King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia.
PLoS One. 2010 Jan 26;5(1):e8904. doi: 10.1371/journal.pone.0008904.
Second messengers have a key role in linking environmental stimuli to physiological responses. One such messenger, guanosine 3',5'-cyclic monophosphate (cGMP), has long been known to be an essential signaling molecule in many different physiological processes in higher plants, including biotic stress responses. To date, however, the guanylyl cyclase (GC) enzymes that catalyze the formation of cGMP from GTP have largely remained elusive in higher plants.
We have identified an Arabidopsis receptor type wall associated kinase-like molecule (AtWAKL10) as a candidate GC and provide experimental evidence to show that the intracellular domain of AtWAKL10(431-700) can generate cGMP in vitro. Further, we also demonstrate that the molecule has kinase activity indicating that AtWAKL10 is a twin-domain catalytic protein. A co-expression and stimulus-specific expression analysis revealed that AtWAKL10 is consistently co-expressed with well characterized pathogen defense related genes and along with these genes is induced early and sharply in response to a range of pathogens and their elicitors.
We demonstrate that AtWAKL10 is a twin-domain, kinase-GC signaling molecule that may function in biotic stress responses that are critically dependent on the second messenger cGMP.
第二信使在将环境刺激与生理反应联系起来方面起着关键作用。作为一种这样的信使,鸟苷 3',5'-环单磷酸(cGMP)长期以来一直被认为是高等植物中许多不同生理过程,包括生物胁迫反应中的重要信号分子。然而,迄今为止,催化 GTP 生成 cGMP 的鸟苷酸环化酶(GC)酶在高等植物中基本上仍然难以捉摸。
我们已经鉴定出拟南芥受体型壁相关激酶样分子(AtWAKL10)作为候选 GC,并提供实验证据表明 AtWAKL10 的细胞内结构域(431-700)可以在体外生成 cGMP。此外,我们还证明该分子具有激酶活性,表明 AtWAKL10 是一种双结构域催化蛋白。共表达和刺激特异性表达分析表明,AtWAKL10 与经过充分表征的病原体防御相关基因一致表达,并且与这些基因一起,它可以早期和急剧地响应多种病原体及其激发子而被诱导。
我们证明 AtWAKL10 是一种双结构域、激酶-GC 信号分子,可能在生物胁迫反应中发挥作用,而生物胁迫反应严重依赖于第二信使 cGMP。