首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Light-Induced Reaction with Oxygen Leads to Chromophore Decomposition and Irreversible Photobleaching in GFP-Type Proteins
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A Light-Induced Reaction with Oxygen Leads to Chromophore Decomposition and Irreversible Photobleaching in GFP-Type Proteins

机译:与氧气的光诱导反应导致GFP型蛋白中的生色团分解和不可逆的光漂白。

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摘要

Photobleaching and photostability of proteins of the green fluorescent protein (GFP) family are crucially important for practical applications of these widely used biomarkers. On the basis of simulations, we propose a mechanism for irreversible bleaching in GFP-type proteins under intense light illumination. The key feature of the mechanism is a photoinduced reaction of the chromophore with molecular oxygen (O-2) inside the protein barrel leading to the chromophore's decomposition. Using quantum mechanics/molecular mechanics (QM/MM) modeling we show that a model system comprising the protein-bound Chro(-) and O-2 can be excited to an electronic state of the intermolecular charge-transfer (CT) character (Chro(center dot)...O-2(-center dot)). Once in the CT state, the system undergoes a series of chemical reactions with low activation barriers resulting in the cleavage of the bridging bond between the phenolic and imidazolinone rings and disintegration of the chromophore.
机译:绿色荧光蛋白(GFP)家族蛋白的光漂白和光稳定性对于这些广泛使用的生物标志物的实际应用至关重要。在模拟的基础上,我们提出了在强光照射下GFP型蛋白不可逆漂白的机理。该机制的关键特征是生色团与蛋白质桶内的分子氧(O-2)发生光诱导反应,导致生色团分解。使用量子力学/分子力学(QM / MM)建模,我们表明包含蛋白结合的Chro(-)和O-2的模型系统可以被激发为分子间电荷转移(CT)特征的电子状态(Chro (中心点)... O-2(-中心点))。一旦进入CT状态,该系统就会经历一系列化学反应,这些化学反应的活化障碍低,导致酚醛和咪唑啉酮环之间的桥键断裂以及发色团分解。

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