Wilson Adjele, Kinney James N, Zwart Petrus H, Punginelli Claire, D'Haene Sandrine, Perreau François, Klein Michael G, Kirilovsky Diana, Kerfeld Cheryl A
Commissariat à l'Energie Atomique, Institut de Biologie et Technologies de Saclay, CNRS, URA 2906, 91191 Gif sur Yvette, France.
J Biol Chem. 2010 Jun 11;285(24):18364-75. doi: 10.1074/jbc.M110.115709. Epub 2010 Apr 5.
The photoprotective processes of photosynthetic organisms involve the dissipation of excess absorbed light energy as heat. Photoprotection in cyanobacteria is mechanistically distinct from that in plants; it involves the orange carotenoid protein (OCP), a water-soluble protein containing a single carotenoid. The OCP is a new member of the family of blue light-photoactive proteins; blue-green light triggers the OCP-mediated photoprotective response. Here we report structural and functional characterization of the wild type and two mutant forms of the OCP, from the model organism Synechocystis PCC6803. The structural analysis provides high resolution detail of the carotenoid-protein interactions that underlie the optical properties of the OCP, unique among carotenoid-proteins in binding a single pigment per polypeptide chain. Collectively, these data implicate several key amino acids in the function of the OCP and reveal that the photoconversion and photoprotective responses of the OCP to blue-green light can be decoupled.
光合生物的光保护过程包括将过量吸收的光能以热的形式耗散。蓝细菌中的光保护机制与植物中的不同;它涉及橙色类胡萝卜素蛋白(OCP),一种含有单个类胡萝卜素的水溶性蛋白。OCP是蓝光光活性蛋白家族的新成员;蓝绿光触发OCP介导的光保护反应。在此,我们报告了来自模式生物集胞藻PCC6803的野生型OCP及其两种突变形式的结构和功能特征。结构分析提供了类胡萝卜素-蛋白质相互作用的高分辨率细节,这些相互作用是OCP光学特性的基础,在每个多肽链结合单个色素的类胡萝卜素-蛋白质中是独特的。总体而言,这些数据表明了几个关键氨基酸在OCP功能中的作用,并揭示了OCP对蓝绿光的光转化和光保护反应可以解偶联。