Department of Biology, Graduate School of Science, Kyushu University, Fukuoka, 812-8581 Japan.
Plant Cell Physiol. 2013 Jan;54(1):80-92. doi: 10.1093/pcp/pcs151. Epub 2012 Nov 18.
Chloroplasts change their position to adapt cellular activities to fluctuating environmental light conditions. Phototropins (phot1 and phot2 in Arabidopsis) are plant-specific blue light photoreceptors that perceive changes in light intensity and direction, and mediate actin-based chloroplast photorelocation movements. Both phot1 and phot2 regulate the chloroplast accumulation response, while phot2 is mostly responsible for the regulation of the avoidance response. Although it has been widely accepted that distinct intracellular localizations of phototropins are implicated in the specificity, the mechanism underlying the phot2-specific avoidance response has remained elusive. In this study, we examined the relationship of the phot2 localization pattern to the chloroplast photorelocation movement. First, the fusion of a nuclear localization signal with phot2, which effectively reduced the amount of phot2 in the cytoplasm, retained the activity for both the accumulation and avoidance responses, indicating that membrane-localized phot2 but not cytoplasmic phot2 is functional to mediate the responses. Importantly, some fractions of phot2, and of phot1 to a lesser extent, were localized on the chloroplast outer membrane. Moreover, the deletion of the C-terminal region of phot2, which was previously shown to be defective in blue light-induced Golgi localization and avoidance response, affected the localization pattern on the chloroplast outer membrane. Taken together, these results suggest that dynamic phot2 trafficking from the plasma membrane to the Golgi apparatus and the chloroplast outer membrane might be involved in the avoidance response.
叶绿体通过改变位置以适应环境光条件的变化。向光素(拟南芥中的 phot1 和 phot2)是植物特异性的蓝光光受体,能够感知光强和光方向的变化,并介导基于肌动蛋白的叶绿体光定位运动。phot1 和 phot2 都调节叶绿体积累反应,而 phot2 主要负责调节回避反应。尽管已经广泛接受向光素的不同细胞内定位与特异性有关,但 phot2 特异性回避反应的机制仍然难以捉摸。在这项研究中,我们研究了 phot2 定位模式与叶绿体光定位运动的关系。首先,用核定位信号融合 phot2,这有效地减少了细胞质中 phot2 的数量,保留了积累和回避反应的活性,表明定位于膜上的 phot2 而不是细胞质中的 phot2 是介导反应的功能。重要的是,一些 phot2 部分,以及 phot1 则较少,定位于叶绿体的外膜上。此外,先前显示 phot2 的 C 端区域缺失会导致蓝光诱导的高尔基体定位和回避反应缺陷,这影响了叶绿体外膜上的定位模式。综上所述,这些结果表明,从质膜到高尔基器和叶绿体外膜的动态 phot2 运输可能参与了回避反应。