Pepe I M
Institute of Biophysics, Faculty of Medicine, University of Genoa, Italy.
J Photochem Photobiol B. 1999 Jan;48(1):1-10. doi: 10.1016/S1011-1344(99)00200-6.
Recent studies on rhodopsin structure and function are reviewed and the properties of vertebrate as well as invertebrate rhodopsin described. Open issues such as the 'red shift' of the absorbance spectra are emphasized in the light of the present model of the retinal-binding pocket. The processes that restore the rhodopsin content in photoreceptors are also presented with a comparison between vertebrate and invertebrate visual systems. The central role of rhodopsin in the phototransduction cascade becomes evident by examining the main reports on light-activated conformational changes of rhodopsin and its interaction with transducin. Shut-off mechanisms are considered by reporting the studies on the sites of rhodopsin phosphorylation and arrestin binding. Furthermore, recent findings on the energetics of phototransduction point out that the ATP needed for photoreception in vertebrates is synthesized in the outer segments where phototransduction events take place.
本文综述了近期关于视紫红质结构与功能的研究,并描述了脊椎动物和无脊椎动物视紫红质的特性。根据目前视网膜结合口袋模型,强调了诸如吸收光谱“红移”等未解决的问题。还介绍了恢复光感受器中视紫红质含量的过程,并对脊椎动物和无脊椎动物视觉系统进行了比较。通过研究视紫红质光激活构象变化及其与转导素相互作用的主要报告,视紫红质在光转导级联反应中的核心作用变得明显。通过报道对视紫红质磷酸化位点和抑制蛋白结合的研究来考虑关闭机制。此外,近期关于光转导能量学的研究结果指出,脊椎动物光感受器所需的ATP是在发生光转导事件的外段合成的。