Sanz A, Moreno J I, Castresana C
Centro Nacional de Biotecnología, CSIC, Campus Universidad Autónoma, Cantoblanco, E-28049 Madrid, Spain.
Plant Cell. 1998 Sep;10(9):1523-37. doi: 10.1105/tpc.10.9.1523.
Changes in gene expression induced in tobacco leaves by the harpin HrpN protein elicitor were examined, and a new cDNA, piox (for pathogen-induced oxygenase), with homology to genes encoding cyclooxygenase or prostaglandin endoperoxide synthase (PGHS), was identified. In addition to the amino acid identity determined, the protein encoded by piox is predicted to have a structural core similar to that of ovine PGHS-1. Moreover, studies of protein functionality demonstrate that the PIOX recombinant protein possesses at least one of the two enzymatic activities of PGHSs, that of catalyzing the oxygenation of polyunsaturated fatty acids. piox transcripts accumulated after protein elicitor treatment or inoculation with bacteria. Expression of piox was induced in tissues responding to inoculation with both incompatible and compatible bacteria, but RNA and protein accumulation differed for both types of interactions. We show that expression of piox is rapidly induced in response to various cellular signals mediating plant responses to pathogen infection and that activation of piox expression is most likely related to the oxidative burst that takes place during the cell death processes examined. Cyclooxygenase catalyzes the first committed step in the formation of prostaglandins and thromboxanes, which are lipid-derived signal molecules that mediate many cellular processes, including the immune response in vertebrates. The finding of tobacco PIOX suggests that more similarities than hitherto expected will be found between the lipid-based responses for plant and animal systems.
研究了harpin HrpN蛋白激发子诱导烟草叶片中基因表达的变化,鉴定出一个新的cDNA,即piox(病原体诱导的加氧酶),它与编码环氧化酶或前列腺素内过氧化物合酶(PGHS)的基因具有同源性。除了已确定的氨基酸同一性外,piox编码的蛋白质预计具有与绵羊PGHS-1相似的结构核心。此外,蛋白质功能研究表明,PIOX重组蛋白具有PGHSs的两种酶活性中的至少一种,即催化多不饱和脂肪酸的氧化。在蛋白质激发子处理或接种细菌后,piox转录本积累。在对不亲和和亲和细菌接种均有反应的组织中,piox的表达被诱导,但两种类型相互作用的RNA和蛋白质积累有所不同。我们表明,piox的表达在响应介导植物对病原体感染反应的各种细胞信号时迅速被诱导,并且piox表达的激活很可能与在所研究的细胞死亡过程中发生的氧化爆发有关。环氧化酶催化前列腺素和血栓素形成过程中的第一个关键步骤,前列腺素和血栓素是脂质衍生的信号分子,介导许多细胞过程,包括脊椎动物的免疫反应。烟草PIOX的发现表明,植物和动物系统基于脂质的反应之间将发现比迄今预期更多的相似之处。