Fankhauser Christian, Chen Meng
Centre for Integrative Genomics, University of Lausanne, Genopode Building, Lausanne, Switzerland.
Trends Plant Sci. 2008 Nov;13(11):596-601. doi: 10.1016/j.tplants.2008.08.007. Epub 2008 Sep 27.
To control many physiological responses, phytochromes directly modulate gene expression. A key regulatory event in this signal transduction pathway is the light-controlled translocation of the photoreceptor from the cytoplasm into the nucleus. Recent publications are beginning to shed light on the molecular mechanisms underlying this central control point. Interestingly, there is a specific mechanism for phytochrome A (phyA) nuclear accumulation. The dedicated phyA nuclear import pathway might be important for the distinct photosensory specificity of this atypical phytochrome. Recent studies in the field also provide a starting point for investigating how the different subcellular pools of phytochrome can control distinct responses to light.
为了控制多种生理反应,光敏色素直接调节基因表达。在这个信号转导途径中,一个关键的调控事件是光感受器从细胞质到细胞核的光控转运。最近的出版物开始揭示这一中心控制点背后的分子机制。有趣的是,光敏色素A(phyA)核积累存在一种特定机制。专门的phyA核输入途径可能对这种非典型光敏色素独特的光感特异性很重要。该领域的最新研究也为研究光敏色素的不同亚细胞库如何控制对光的不同反应提供了一个起点。