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Mapping a protein recognition centre with chiral photoactive ligands. An integrated approach combining photophysics reactivity proteomics and molecular dynamics simulation studies

机译:用手性光敏配体定位蛋白质识别中心。整合了光物理反应性蛋白质组学和分子动力学模拟研究的综合方法

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摘要

A multidisciplinary strategy to obtain structural information on the intraprotein region is described here. As probe ligands, (S)- and (R)->CPFMe (the methyl esters of the chiral drug carprofen) have been selected, while bovine α1-acid glycoprotein (BAAG) has been chosen as a biological host. The procedure involves the separate irradiation of the BAAG/(S)->CPFMe and BAAG/(R)->CPFMe complexes, coupled with fluorescence spectroscopy, laser flash photolysis, proteomic analysis, docking and molecular dynamics simulations. Thus, irradiation of the BAAG/>CPFMe complexes at λ = 320 nm was followed by fluorescence spectroscopy. The intensity of the emission band obtained after irradiation indicated photodehalogenation, whereas its structureless shape suggested covalent binding of the resulting radical >CBZMe˙ to the biopolymer. After gel filtration chromatography, the spectra still displayed emission, in agreement with covalent attachment of >CBZMe˙ to BAAG. Stereodifferentiation was observed in this process. After trypsin digestion and ESI-MS/MS, the incorporation of >CBZMe was detected at Phe68. Docking and molecular dynamics simulation studies, which were carried out using a homology model of BAAG, reveal that the closer proximity of the aromatic moiety of the (S)-enantiomer to the phenyl group of Phe68 would be responsible for the experimentally observed, more effective chemical modification of the protein. The proposed tridimensional structure of BAAG covalently modified by the two enantiomers is also provided. In principle, this approach can be extended to a variety of protein/ligand complexes.
机译:这里介绍了获取蛋白质内区域结构信息的多学科策略。作为探针配体,已选择(S)-和(R)-> CPFMe (手性药物卡洛芬的甲酯),而牛α1-酸糖蛋白(BAAG)已被选作生物主办。该程序涉及分别照射BAAG /(S)-> CPFMe 和BAAG /(R)-> CPFMe 复合物,并结合荧光光谱,激光闪光光解,蛋白质组学分析,对接和分子动力学模拟。因此,用荧光光谱法在λ= 320nm处照射BAAG / > CPFMe 复合物。辐照后获得的发射带强度表明发生了光脱卤作用,而其无结构形状表明所得自由基>CBZMe˙与生物聚合物共价结合。凝胶过滤层析后,光谱仍然显示发射,这与>CBZMe˙与BAAG的共价连接相一致。在此过程中观察到立体定向分化。胰蛋白酶消化和ESI-MS / MS后,在Phe68处检测到> CBZMe 的掺入。使用BAAG的同源性模型进行的对接和分子动力学模拟研究表明,(S)-对映异构体的芳族部分与Phe68的苯基更接近,这将有助于实验观察到的结果更有效蛋白质的化学修饰。还提供了由两种对映异构体共价修饰的BAAG的三维结构。原则上,该方法可以扩展到多种蛋白质/配体复合物。

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