Kovtun Y, Chiu W L, Zeng W, Sheen J
Department of Genetics, Harvard Medical School, Massachusetts General Hospital, Boston 02114, USA.
Nature. 1998 Oct 15;395(6703):716-20. doi: 10.1038/27240.
The plant hormone auxin activates many early response genes that are thought to be responsible for diverse aspects of plant growth and development. It has been proposed that auxin signal transduction is mediated by a conserved signalling cascade consisting of three protein kinases: the mitogen-activated protein kinase (MAPK), MAPK kinase (MAPKK) and MAPKK kinase (MAPKKK). Here we show that a specific plant MAPKKK, NPK1, activates a MAPK cascade that leads to the suppression of early auxin response gene transcription. A mutation in the kinase domain abolishes NPK1 activity, and the presence of the carboxy-terminal domain diminishes the kinase activity. Moreover, the effects of NPK1 on the activation of a MAPK and the repression of early auxin response gene transcription are specifically eliminated by a MAPK phosphatase. Transgenic tobacco plants overexpressing the NPK1 kinase domain produced seeds defective in embryo and endosperm development. These results suggest that auxin sensitivity may be balanced by antagonistic signalling pathways that use a distinct MAPK cascade in higher plants.
植物激素生长素可激活许多早期反应基因,这些基因被认为负责植物生长和发育的多个方面。有人提出,生长素信号转导是由一个保守的信号级联介导的,该信号级联由三种蛋白激酶组成:丝裂原活化蛋白激酶(MAPK)、MAPK激酶(MAPKK)和MAPKK激酶(MAPKKK)。在这里,我们表明一种特定的植物MAPKKK,即NPK1,激活了一个MAPK级联反应,导致早期生长素反应基因转录受到抑制。激酶结构域中的一个突变消除了NPK1的活性,而羧基末端结构域的存在降低了激酶活性。此外,MAPK磷酸酶特异性地消除了NPK1对MAPK激活和早期生长素反应基因转录抑制的影响。过表达NPK1激酶结构域的转基因烟草植株产生的种子在胚胎和胚乳发育方面存在缺陷。这些结果表明,在高等植物中,生长素敏感性可能通过使用不同MAPK级联的拮抗信号通路来平衡。