Golub Maksym, Moldenhauer Marcus, Matsarskaia Olga, Martel Anne, Grudinin Sergei, Soloviov Dmytro, Kuklin Alexander, Maksimov Eugene G, Friedrich Thomas, Pieper Jörg
Institute of Physics, University of Tartu, 50411 Tartu, Estonia.
Institute of Chemistry PC 14, Technische Universität Berlin, Straße des 17. Juni 135, 10623 Berlin, Germany.
J Phys Chem B. 2023 Mar 9;127(9):1901-1913. doi: 10.1021/acs.jpcb.2c07182. Epub 2023 Feb 23.
We used small-angle neutron scattering partially coupled with size-exclusion chromatography to unravel the solution structures of two variants of the Orange Carotenoid Protein (OCP) lacking the N-terminal extension (OCP-ΔNTE) and its complex formation with the Fluorescence Recovery Protein (FRP). The dark-adapted, orange form OCP-ΔNTE is fully photoswitchable and preferentially binds the pigment echinenone. Its complex with FRP consists of a monomeric OCP component, which closely resembles the compact structure expected for the OCP ground state, OCP. In contrast, the pink form OCP-ΔNTE, preferentially binding the pigment canthaxanthin, is mostly nonswitchable. The pink OCP form appears to occur as a dimer and is characterized by a separation of the N- and C-terminal domains, with the canthaxanthin embedded only into the N-terminal domain. Therefore, OCP-ΔNTE can be viewed as a prototypical model system for the active, spectrally red-shifted state of OCP, OCP. The dimeric structure of OCP-ΔNTE is retained in its complex with FRP. Small-angle neutron scattering using partially deuterated OCP-FRP complexes reveals that FRP undergoes significant structural changes upon complex formation with OCP. The observed structures are assigned to individual intermediates of the OCP photocycle in the presence of FRP.
我们使用小角中子散射并部分结合尺寸排阻色谱法,来解析缺少N端延伸的橙色类胡萝卜素蛋白(OCP)的两个变体(OCP-ΔNTE)的溶液结构,以及它与荧光恢复蛋白(FRP)的复合物形成情况。暗适应的橙色形式的OCP-ΔNTE具有完全的光开关能力,且优先结合色素海胆酮。它与FRP形成的复合物由一个单体OCP组分组成,该组分与OCP基态(OCP)预期的紧密结构非常相似。相比之下,优先结合色素角黄素的粉色形式的OCP-ΔNTE大多不可光开关。粉色的OCP形式似乎以二聚体形式存在,其特征是N端和C端结构域分离,角黄素仅嵌入N端结构域。因此,OCP-ΔNTE可被视为OCP活性、光谱红移状态的典型模型系统。OCP-ΔNTE的二聚体结构在其与FRP的复合物中得以保留。使用部分氘代的OCP-FRP复合物进行小角中子散射表明,FRP在与OCP形成复合物时会发生显著的结构变化。观察到的结构被指定为在有FRP存在时OCP光循环的各个中间体。