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首页> 外文期刊>Biochemistry >Hydrogen-Deuterium Exchange Mass Spectrometry Reveals the Interaction of Fenna-Matthews-Olson Protein and Chlorosome CsmA Protein
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Hydrogen-Deuterium Exchange Mass Spectrometry Reveals the Interaction of Fenna-Matthews-Olson Protein and Chlorosome CsmA Protein

机译:氢-氘交换质谱揭示了Fenna-Matthews-Olson蛋白与染色体CsmA蛋白的相互作用

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In green-sulfur bacterial photosynthesis, excitation energy absorbed by a peripheral antenna structure known as the chlorosome is sequentially transferred through a baseplate protein to the Fenna-Matthews-Olson (FMO) antenna protein and into the reaction center, which is embedded in the cytoplasmic membrane. The molecular details of the optimized photosystem architecture required for efficient energy transfer are only partially understood. We address here the question of how the baseplate interacts with the FMO protein by applying hydrogen/deuterium exchange coupled with enzymatic digestion and mass spectrometry analysis to reveal the binding interface of the FMO antenna protein and the CsmA baseplate protein. Several regions on the FMO protein, represented by peptides consisting of 123-129, 140-149, 150-162, 191-208, and 224-232, show significant decreases of deuterium uptake after CsmA binding. The results indicate that the CsmA protein interacts with the Bchl a #1 side of the FMO protein. A global picture including peptide-level details for the architecture of the photosystem from green-sulfur bacteria can now be drawn.
机译:在绿硫细菌的光合作用中,被称为绿体的外围天线结构吸收的激发能依次通过基板蛋白转移到Fenna-Matthews-Olson(FMO)天线蛋白中,并进入反应中心,该中心嵌入细胞质中膜。有效传递能量所需的优化光系统架构的分子细节仅被部分理解。我们在这里解决通过使用氢/氘交换结合酶消化和质谱分析来揭示FMO天线蛋白与CsmA基板蛋白的结合界面,以了解基板如何与FMO蛋白相互作用的问题。 FMO蛋白上的几个区域(由123-129、140-149、150-162、191-208和224-232组成的肽表示)在CsmA结合后会显着降低氘的吸收。结果表明,CsmA蛋白与FMO蛋白的Bchl a#1侧相互作用。现在可以绘制一张全局图片,其中包括来自绿色硫细菌的光系统架构的肽级细节。

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