Engelhard Christopher, Diensthuber Ralph P, Möglich Andreas, Bittl Robert
Fachbereich Physik, Institut für Experimentalphysik, Freie Universität Berlin, 14195, Berlin, Germany.
Biophysikalische Chemie, Institut für Biologie, Humboldt-Universität zu Berlin, 10115, Berlin, Germany.
Sci Rep. 2017 May 3;7(1):1385. doi: 10.1038/s41598-017-01497-7.
Sensory photoreceptors absorb light via their photosensor modules and trigger downstream physiological adaptations via their effector modules. Light reception accordingly depends on precisely orchestrated interactions between these modules, the molecular details of which often remain elusive. Using electron-electron double resonance (ELDOR) spectroscopy and site-directed spin labelling, we chart the structural transitions facilitating blue-light reception in the engineered light-oxygen-voltage (LOV) histidine kinase YF1 which represents a paradigm for numerous natural signal receptors. Structural modelling based on pair-wise distance constraints derived from ELDOR pinpoint light-induced rotation and splaying apart of the two LOV photosensors in the dimeric photoreceptor. Resultant molecular strain likely relaxes as left-handed supercoiling of the coiled-coil linker connecting sensor and effector units. ELDOR data on a photoreceptor variant with an inverted signal response indicate a drastically altered dimer interface but light-induced structural transitions in the linker that are similar to those in YF1. Taken together, we provide mechanistic insight into the signal trajectories of LOV photoreceptors and histidine kinases that inform molecular simulations and the engineering of novel receptors.
感觉光感受器通过其光传感器模块吸收光,并通过其效应器模块触发下游生理适应。因此,光接收取决于这些模块之间精确协调的相互作用,而其分子细节往往仍然难以捉摸。我们使用电子-电子双共振(ELDOR)光谱和定点自旋标记,绘制了促进工程化光-氧-电压(LOV)组氨酸激酶YF1中蓝光接收的结构转变,YF1代表了众多天然信号受体的范例。基于从ELDOR得出的成对距离约束进行的结构建模,精确指出了二聚体光感受器中两个LOV光传感器的光诱导旋转和张开。由此产生的分子应变可能会随着连接传感器和效应器单元的卷曲螺旋接头的左手超螺旋而松弛。关于具有反向信号响应的光感受器变体的ELDOR数据表明二聚体界面发生了巨大变化,但接头中的光诱导结构转变与YF1中的相似。综上所述,我们提供了对LOV光感受器和组氨酸激酶信号轨迹的机制性见解,为分子模拟和新型受体的工程设计提供了依据。