Hahn Janina, Kühne Ronald, Schmieder Peter
Leibniz-Institut für Molekulare Pharmakologie (FMP), Robert-Rössle-Strasse 10, 13125 Berlin, Germany.
Chembiochem. 2007 Dec 17;8(18):2249-55. doi: 10.1002/cbic.200700256.
The detailed structure of the chromophore-binding pocket in phytochrome proteins and the structural changes associated with its photocycle are still matters of debate. Insight into the structure and dynamics of the binding pocket has been gained through the comparison of a (15)N NMR spectrum of alpha-C-phycocyanin, which is often used as a model system for the study of phytochromes, with the previously described (15)N NMR spectrum of the cyanobacterial phytochrome Cph1. The former spectrum supports the hypothesis that all four nitrogen atoms of the alpha-C-phycocyanin chromophore are protonated, in analogy with the proposed protonation state for the P(r) and P(fr) forms of Cph1. The spectra show that the chromophores in both proteins exhibit a distinct dynamic behavior, as also indicated by a NOESY spectrum of Cph1. Finally, stereochemical arguments and a Cph1 homology model support the hypothesis that the chromophore in Cph1 is most likely in the ZZZssa conformation in the P(r) form of the protein.
植物色素蛋白中发色团结合口袋的详细结构以及与其光循环相关的结构变化仍是有争议的问题。通过将常用于植物色素研究的模型系统α-C-藻蓝蛋白的(15)N NMR光谱与先前描述的蓝藻植物色素Cph1的(15)N NMR光谱进行比较,对结合口袋的结构和动力学有了深入了解。前一个光谱支持这样的假设,即α-C-藻蓝蛋白发色团的所有四个氮原子都被质子化,这与Cph1的P(r)和P(fr)形式的拟议质子化状态类似。光谱表明,两种蛋白质中的发色团都表现出独特的动态行为,Cph1的NOESY光谱也表明了这一点。最后,立体化学论证和Cph1同源模型支持这样的假设,即Cph1中的发色团在蛋白质的P(r)形式中最有可能处于ZZZssa构象。