Laboratory of Plant Physiology, Graduate School of Science, Kyoto University, Kitashirakawa-Oiwake-Cho, Sakyo-Ku, Kyoto 606-8502, Japan.
Plant Cell. 2012 Jul;24(7):2949-62. doi: 10.1105/tpc.111.094201. Epub 2012 Jul 27.
Phytochrome is a red (R)/far-red (FR) light-sensing photoreceptor that regulates various aspects of plant development. Among the members of the phytochrome family, phytochrome A (phyA) exclusively mediates atypical phytochrome responses, such as the FR high irradiance response (FR-HIR), which is elicited under prolonged FR. A proteasome-based degradation pathway rapidly eliminates active Pfr (the FR-absorbing form of phyA) under R. To elucidate the structural basis for the phyA-specific properties, we systematically constructed 16 chimeric phytochromes in which each of four parts of the phytochrome molecule, namely, the N-terminal extension plus the Per/Arnt/Sim domain (N-PAS), the cGMP phosphodiesterase/adenyl cyclase/FhlA domain (GAF), the phytochrome domain (PHY), and the entire C-terminal half, was occupied by either the phyA or phytochrome B sequence. These phytochromes were expressed in transgenic Arabidopsis thaliana to examine their physiological activities. Consequently, the phyA N-PAS sequence was shown to be necessary and sufficient to promote nuclear accumulation under FR, whereas the phyA sequence in PHY was additionally required to exhibit FR-HIR. Furthermore, the phyA sequence in PHY alone substantially increased the light sensitivity to R. In addition, the GAF phyA sequence was important for rapid Pfr degradation. In summary, distinct structural modules, each of which confers different properties to phyA, are assembled on the phyA molecule.
光敏色素是一种红光(R)/远红光(FR)光感受器,可调节植物发育的各个方面。在光敏色素家族成员中,光敏色素 A(phyA)专门介导非典型光敏色素反应,如 FR 高光响应(FR-HIR),该反应在长时间 FR 下被引发。基于蛋白酶体的降解途径可在 R 下迅速消除活性 Pfr(phyA 的 FR 吸收形式)。为了阐明 phyA 特异性特性的结构基础,我们系统地构建了 16 种嵌合光敏色素,其中光敏色素分子的四个部分,即 N 端延伸加 Per/Arnt/Sim 结构域(N-PAS)、cGMP 磷酸二酯酶/腺苷酸环化酶/FhlA 结构域(GAF)、光敏色素结构域(PHY)和整个 C 端的一半,分别由 phyA 或光敏色素 B 序列占据。这些光敏色素在转基因拟南芥中表达,以检查它们的生理活性。结果表明,phyA N-PAS 序列是 FR 下促进核积累所必需和充分的,而 phyA 在 PHY 中的序列则另外需要表现出 FR-HIR。此外,单独的 PHY 中的 phyA 序列大大增加了对 R 的光敏感性。此外,GAF phyA 序列对于快速 Pfr 降解很重要。总之,赋予 phyA 不同特性的不同结构模块组装在 phyA 分子上。