Harter K, Kircher S, Frohnmeyer H, Krenz M, Nagy F, Schäfer E
Department of Biology II, University of Freiburg, Germany.
Plant Cell. 1994 Apr;6(4):545-59. doi: 10.1105/tpc.6.4.545.
Functional cell-free systems may be excellent tools with which to investigate light-dependent signal transduction mechanisms in plants. By evacuolation of parsley protoplasts and subsequent silicon oil gradient centrifugation of lysed evacuolated protoplasts, we obtained a highly pure and concentrated plasma membrane-containing cytosol. Using GT- and G-box DNA elements, we were able to demonstrate a specific localization of a pool of G-box binding activity and factors (GBFs) but not one of GT-box binding activity in this cytosolic fraction. The DNA binding activity of the cytosolic GBFs is modulated in vivo as well as in vitro by light and phosphorylation/dephosphorylation activities. The regulation of cytosolic G-box binding activity by irradiation with continuous white light and phosphorylation correlates with a light-modulated transport of GBFs to the nucleus. This was shown by a GBF-antibody cotranslocation assay in permeabilized, cell-free evacuolated parsley protoplasts. We propose that a light-regulated subcellular displacement of cytosolic GBFs to the nucleus may be an important step in the signal transduction pathway coupling photoreception to light-dependent gene expression.
无细胞功能系统可能是研究植物光依赖信号转导机制的极佳工具。通过对欧芹原生质体进行液泡排空,并对裂解后的排空原生质体进行硅油梯度离心,我们获得了高度纯净且浓缩的含有质膜的胞质溶胶。利用GT盒和G盒DNA元件,我们能够证明在该胞质组分中存在一组G盒结合活性和因子(GBFs)的特异性定位,但不存在GT盒结合活性的定位。胞质GBFs的DNA结合活性在体内和体外都受到光以及磷酸化/去磷酸化活性的调节。连续白光照射和磷酸化对胞质G盒结合活性的调节与GBFs向细胞核的光调节转运相关。这在通透的、无细胞的排空欧芹原生质体中通过GBF抗体共转运试验得到了证明。我们提出,胞质GBFs向细胞核的光调节亚细胞移位可能是将光感受与光依赖基因表达偶联的信号转导途径中的一个重要步骤。