Department of Genetics, Dartmouth Medical School, Hanover, NH 03755, USA.
Proc Natl Acad Sci U S A. 2010 Sep 21;107(38):16715-20. doi: 10.1073/pnas.1011190107. Epub 2010 Aug 23.
Photoadaptation, the ability to attenuate a light response on prolonged light exposure while remaining sensitive to escalating changes in light intensity, is essential for organisms to decipher time information appropriately, yet the underlying molecular mechanisms are poorly understood. In Neurospora crassa, VIVID (VVD), a small LOV domain containing blue-light photoreceptor protein, affects photoadaptation for most if not all light-responsive genes. We report that there is a physical interaction between VVD and the white collar complex (WCC), the primary blue-light photoreceptor and the transcription factor complex that initiates light-regulated transcriptional responses in Neurospora. Using two previously characterized VVD mutants, we show that the level of interaction is correlated with the level of WCC repression in constant light and that even light-insensitive VVD is sufficient partly to regulate photoadaptation in vivo. We provide evidence that a functional GFP-VVD fusion protein accumulates in the nucleus on light induction but that nuclear localization of VVD does not require light. Constitutively expressed VVD alone is sufficient to change the dynamics of photoadaptation. Thus, our results demonstrate a direct molecular connection between two of the most essential light signaling components in Neurospora, VVD and WCC, illuminating a previously uncharacterized process for light-sensitive eukaryotic cells.
光适应是指在持续光照下减弱光反应的能力,同时对光强度的逐渐变化保持敏感,这对于生物正确解读时间信息至关重要,但目前对其潜在的分子机制还知之甚少。在粗糙脉孢菌中,VIVID(VVD),一种含有 LOV 结构域的蓝光光受体蛋白,影响大多数(如果不是全部)光响应基因的光适应。我们报告称,VVD 与白色衣领复合物(WCC)之间存在物理相互作用,WCC 是最初的蓝光光受体和转录因子复合物,它在Neurospora 中启动光调控的转录反应。使用之前已经鉴定的两个 VVD 突变体,我们表明相互作用的水平与持续光照下 WCC 抑制的水平相关,即使是对光不敏感的 VVD 也足以部分调节体内的光适应。我们提供的证据表明,功能性 GFP-VVD 融合蛋白在光诱导时在核内积累,但 VVD 的核定位不需要光。组成型表达的 VVD 本身足以改变光适应的动力学。因此,我们的结果表明,Neurospora 中两个最重要的光信号成分 VVD 和 WCC 之间存在直接的分子联系,为光敏感真核细胞的一个以前未被描述的过程提供了线索。