Inoue Shin-Ichiro, Kinoshita Toshinori, Matsumoto Masaki, Nakayama Keiichi I, Doi Michio, Shimazaki Ken-Ichiro
Department of Biology, Faculty of Science, Kyushu University, Ropponmatsu, Fukuoka 810-8560, Japan.
Proc Natl Acad Sci U S A. 2008 Apr 8;105(14):5626-31. doi: 10.1073/pnas.0709189105. Epub 2008 Mar 31.
Phototropins are autophosphorylating protein kinases of plant-specific blue light receptors. They regulate various blue light responses, including phototropism, chloroplast movements, hypocotyl growth inhibition, leaf flattening, and stomatal opening. However, the physiological role of autophosphorylation remains unknown. Here, we identified phosphorylation sites of Ser or Thr in the N terminus, Hinge1 region, kinase domain, and C terminus in Arabidopsis phototropin1 (phot1) by liquid chromatography-tandem mass spectrometry in vivo. We substituted these Ser or Thr residues with Ala in phot1 and analyzed their functions by inspecting the phot1-mediated responses of stomatal opening, phototropism, chloroplast accumulation, and leaf flattening after the transformation of the phot1 phot2 double mutant. Among these sites, we found that autophosphorylation of Ser-851 in the activation loop of the kinase domain was required for the responses mentioned above, whereas the phosphorylation of the other Ser and Thr, except those in the activation loop, was not. Ser-849 in the loop may have an additional role in the responses. Immunological analysis revealed that Ser-851 was phosphorylated rapidly by blue light in a fluence-dependent manner and dephosphorylated gradually upon darkness. We conclude that autophosphorylation of Ser-851 is a primary step that mediates signaling between photochemical reaction and physiological events.
向光素是植物特有的蓝光受体的自磷酸化蛋白激酶。它们调节各种蓝光反应,包括向光性、叶绿体运动、下胚轴生长抑制、叶片伸展和气孔开放。然而,自磷酸化的生理作用仍然未知。在这里,我们通过液相色谱-串联质谱法在体内鉴定了拟南芥向光素1(phot1)的N端、铰链1区域、激酶结构域和C端中Ser或Thr的磷酸化位点。我们将这些Ser或Thr残基在phot1中替换为Ala,并通过检测phot1光2双突变体转化后气孔开放、向光性、叶绿体积累和叶片伸展的phot1介导反应来分析它们的功能。在这些位点中,我们发现激酶结构域激活环中Ser-851的自磷酸化是上述反应所必需的,而除激活环中的Ser和Thr外,其他Ser和Thr的磷酸化则不是必需的。环中的Ser-849可能在这些反应中具有额外的作用。免疫分析表明,Ser-851在蓝光下以光通量依赖的方式迅速磷酸化,并在黑暗中逐渐去磷酸化。我们得出结论,Ser-851的自磷酸化是介导光化学反应和生理事件之间信号传导的主要步骤。