Su Yi-shin, Lagarias J Clark
Section of Molecular and Cellular Biology, University of California, Davis, California 95616, USA.
Plant Cell. 2007 Jul;19(7):2124-39. doi: 10.1105/tpc.107.051516. Epub 2007 Jul 27.
The photoreversibility of plant phytochromes enables continuous surveillance of the ambient light environment. Through expression of profluorescent, photoinsensitive Tyr-to-His mutant alleles of Arabidopsis thaliana phytochrome B (PHYB(Y276H)) and Arabidopsis phytochrome A (PHYA(Y242H)) in transgenic Arabidopsis plants, we demonstrate that photoconversion is not a prerequisite for phytochrome signaling. PHYB(Y276H)-expressing plants exhibit chromophore-dependent constitutive photomorphogenesis, light-independent phyB(Y276H) nuclear localization, constitutive activation of genes normally repressed in darkness, and light-insensitive seed germination. Fluence rate analyses of transgenic plants expressing PHYB(Y276H), PHYA(Y242H), and other Y(GAF) mutant alleles of PHYB demonstrate that a range of altered light-signaling activities are associated with mutation of this residue. We conclude that the universally conserved GAF domain Tyr residue, with which the bilin chromophore is intimately associated, performs a critical role in coupling light perception to signal transduction by plant phytochromes.
植物光敏色素的光可逆性能够持续监测周围的光照环境。通过在转基因拟南芥植株中表达拟南芥光敏色素B(PHYB(Y276H))和拟南芥光敏色素A(PHYA(Y242H))的前荧光、对光不敏感的酪氨酸到组氨酸突变等位基因,我们证明光转换并非光敏色素信号传导的先决条件。表达PHYB(Y276H)的植株表现出依赖于生色团的组成型光形态建成、不依赖光的phyB(Y276H)核定位、通常在黑暗中被抑制的基因的组成型激活以及对光不敏感的种子萌发。对表达PHYB(Y276H)、PHYA(Y242H)以及PHYB的其他Y(GAF)突变等位基因的转基因植株的光通量率分析表明,一系列改变的光信号活性与该残基的突变相关。我们得出结论,与藻胆素生色团紧密相关的普遍保守的GAF结构域酪氨酸残基在植物光敏色素将光感知与信号转导偶联的过程中发挥着关键作用。