Department of Plant and Microbial Biology, University of California, Berkeley, California 94720.
Plant Cell. 2014 Jan;26(1):426-37. doi: 10.1105/tpc.113.118588. Epub 2014 Jan 7.
The orange carotenoid protein (OCP) serves as a sensor of light intensity and an effector of phycobilisome (PB)-associated photoprotection in cyanobacteria. Structurally, the OCP is composed of two distinct domains spanned by a single carotenoid chromophore. Functionally, in response to high light, the OCP converts from a dark-stable orange form, OCP(O), to an active red form, OCP(R). The C-terminal domain of the OCP has been implicated in the dynamic response to light intensity and plays a role in switching off the OCP's photoprotective response through its interaction with the fluorescence recovery protein. The function of the N-terminal domain, which is uniquely found in cyanobacteria, is unclear. To investigate its function, we isolated the N-terminal domain in vitro using limited proteolysis of native OCP. The N-terminal domain retains the carotenoid chromophore; this red carotenoid protein (RCP) has constitutive PB fluorescence quenching activity comparable in magnitude to that of active, full-length OCP(R). A comparison of the spectroscopic properties of the RCP with OCP(R) indicates that critical protein-chromophore interactions within the C-terminal domain are weakened in the OCP(R) form. These results suggest that the C-terminal domain dynamically regulates the photoprotective activity of an otherwise constitutively active carotenoid binding N-terminal domain.
橙色类胡萝卜素蛋白 (OCP) 作为光强度的传感器和藻胆体 (PB) 相关光保护作用的效应器在蓝细菌中发挥作用。结构上,OCP 由一个单一的类胡萝卜素发色团跨越的两个不同结构域组成。功能上,对高光的响应,OCP 从暗稳定的橙色形式 OCP(O) 转换为活跃的红色形式 OCP(R)。OCP 的 C 末端结构域与对光强度的动态响应有关,并通过与荧光恢复蛋白的相互作用在关闭 OCP 的光保护反应中起作用。OCP 中特有的 N 末端结构域的功能尚不清楚。为了研究其功能,我们使用天然 OCP 的有限蛋白水解体外分离 N 末端结构域。N 末端结构域保留类胡萝卜素发色团;这种红色类胡萝卜素蛋白 (RCP) 具有与活性全长 OCP(R)相当的 PB 荧光猝灭活性。RCP 与 OCP(R) 的光谱特性比较表明,C 末端结构域内的关键蛋白-发色团相互作用在 OCP(R)形式中减弱。这些结果表明,C 末端结构域动态调节否则具有组成性活性的类胡萝卜素结合 N 末端结构域的光保护活性。