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Protein-protein complexation in bioluminescence

机译:生物发光中的蛋白质-蛋白质复合

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摘要

In this review we summarize the progress made towards understanding the role of protein-protein interactions in the function of various bioluminescence systems of marine organisms, including bacteria, jellyfish and soft corals, with particular focus on methodology used to detect and characterize these interactions. In some bioluminescence systems, protein-protein interactions involve an “accessory protein” whereby a stored substrate is efficiently delivered to the bioluminescent enzyme luciferase. Other types of complexation mediate energy transfer to an “antenna protein” altering the color and quantum yield of a bioluminescence reaction. Spatial structures of the complexes reveal an important role of electrostatic forces in governing the corresponding weak interactions and define the nature of the interaction surfaces. The most reliable structural model is available for the protein-protein complex of the Ca2+-regulated photoprotein clytin and green-fluorescent protein (GFP) from the jellyfish Clytia gregaria , solved by means of Xray crystallography, NMR mapping and molecular docking. This provides an example of the potential strategies in studying the transient complexes involved in bioluminescence. It is emphasized that structural studies such as these can provide valuable insight into the detailed mechanism of bioluminescence.
机译:在这篇综述中,我们总结了在理解蛋白质-蛋白质相互作用在海洋生物(包括细菌,水母和软珊瑚)的各种生物发光系统功能中的作用方面取得的进展,特别关注了用于检测和表征这些相互作用的方法。在某些生物发光系统中,蛋白质与蛋白质的相互作用涉及“辅助蛋白质”,从而将存储的底物有效地传递至生物发光酶荧光素酶。其他类型的络合介导能量转移至“天线蛋白”,从而改变生物发光反应的颜色和量子产率。配合物的空间结构揭示了静电力在控制相应的弱相互作用中的重要作用,并定义了相互作用表面的性质。最可靠的结构模型可用于海 2 + 调控的光蛋白Clytin和绿色荧光蛋白(GFP)的蛋白质-蛋白质复合物gregaria,通过X射线晶体学,NMR谱图和分子对接解决。这提供了研究涉及生物发光的瞬态复合物的潜在策略的例子。需要强调的是,诸如此类的结构研究可以为生物发光的详细机理提供有价值的见解。

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