Bogre L., Ligterink W., Meskiene I., Barker P. J., Heberle-Bors E., Huskisson N. S., Hirt H.
Institute of Microbiology and Genetics, Vienna Biocenter, University of Vienna, Dr. Bohrgasse 9, 1030 Vienna, Austria.
Plant Cell. 1997 Jan;9(1):75-83. doi: 10.1105/tpc.9.1.75.
Mechanical injury in plants induces responses that are involved not only in healing but also in defense against a potential pathogen. To understand the intracellular signaling mechanism of wounding, we have investigated the involvement of protein kinases. Using specific antibodies, we showed that wounding alfalfa leaves specifically induces the transient activation of the p44MMK4 kinase, which belongs to the family of mitogen-activated protein kinases. Whereas activation of the MMK4 pathway is a post-translational process and was not blocked by [alpha]-amanitin and cycloheximide, inactivation depends on de novo transcription and translation of a protein factor(s). After wound-induced activation, the MMK4 pathway was subject to a refractory period of 25 min, during which time restimulation was not possible, indicating that the inactivation mechanism is only transiently active. After activation of the p44MMK4 kinase by wounding, transcript levels of the MMK4 gene increased, suggesting that the MMK4 gene may be a direct target of the MMK4 pathway. In contrast, transcripts of the wound-inducible MsWIP gene, encoding a putative proteinase inhibitor, were detected only several hours after wounding. Abscisic acid, methyl jasmonic acid, and electrical activity are known to mediate wound signaling in plants. However, none of these factors was able to activate the p44MMK4 kinase in the absence of wounding, suggesting that the MMK4 pathway acts independently of these signals.
植物中的机械损伤会引发多种反应,这些反应不仅涉及伤口愈合,还包括对潜在病原体的防御。为了了解伤口愈合的细胞内信号传导机制,我们研究了蛋白激酶的作用。通过使用特异性抗体,我们发现,苜蓿叶片受到损伤后会特异性地诱导p44MMK4激酶的瞬时激活,该激酶属于丝裂原活化蛋白激酶家族。MMK4途径的激活是一个翻译后过程,不受α-鹅膏蕈碱和环己酰亚胺的阻断,而失活则依赖于一种蛋白质因子的从头转录和翻译。伤口诱导激活后,MMK4途径会经历25分钟的不应期,在此期间无法再次刺激,这表明失活机制只是短暂活跃。伤口激活p44MMK4激酶后,MMK4基因的转录水平增加,这表明MMK4基因可能是MMK途径的直接靶点。相比之下,编码假定蛋白酶抑制剂的伤口诱导型MsWIP基因的转录本仅在受伤数小时后才被检测到。已知脱落酸、茉莉酸甲酯和电活动在植物中介导伤口信号传导。然而,在没有伤口的情况下,这些因素均无法激活p44MMK4激酶,这表明MMK4途径独立于这些信号发挥作用。