Interaction of the orange carotenoid protein with the phycobilisome core and fluorescence recovery protein

D. Zlenko, P. Krasilnikov, I. Stadnichuk
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引用次数: 1

Abstract

Using methods of molecular modeling, we have derived a universal spatial model of the orange carotenoid protein (OCP) and phycobilisome (PBS) core interaction in process of energy excess dissipation. The protrusion of the phy-cobilin domain (PB) of the core-membrane linker polypeptide (Lcm) forms the interaction site for the OCP central cavity on the PBS core surface. This spatial arrangement has to be the most advantageous one because the LCM, as the major terminal PBS-fluorescence emitter, gathers energy from the other phycobiliproteins within the PBS before quenching by OCP. In agreement with the constructed model, the small fluorescence recovery protein (FRP) also interacts with the OCPs central cavity weakening the PBS and OCP binding.
橙类胡萝卜素蛋白与藻胆小体核心和荧光恢复蛋白的相互作用
利用分子模拟的方法,建立了柑橘类胡萝卜素蛋白(OCP)和藻胆异构体(PBS)在能量过剩耗散过程中核心相互作用的通用空间模型。核心-膜连接多肽(Lcm)的ph -cobilin结构域(PB)的突出形成了PBS核心表面OCP中心腔的相互作用位点。这种空间排列是最有利的,因为LCM作为主要的末端PBS荧光发射器,在被OCP猝灭之前从PBS内的其他藻胆蛋白那里收集能量。与构建的模型一致,小荧光恢复蛋白(FRP)也与OCP中心腔相互作用,削弱了PBS和OCP的结合。
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