Department of Inorganic and Analytical Chemistry, University of Debrecen, H-4032 Debrecen, Egyetem tér 1, Hungary.
Institute of Chemistry, Department of Organic Chemistry, ELTE Eötvös Loránd University, H-1518 Budapest, 112. P.O. Box 32, Hungary.
Molecules. 2018 Aug 30;23(9):2196. doi: 10.3390/molecules23092196.
Ultra-violet (UV) irradiation has a significant impact on the structure and function of proteins that is supposed to be in relationship with the tryptophan-mediated photolysis of disulfide bonds. To investigate the correlation between the photoexcitation of Trp residues in polypeptides and the associated reduction of disulfide bridges, a series of small, cyclic oligopeptide models were analyzed in this work. Average distances between the aromatic side chains and the disulfide bridge were determined following molecular mechanics (MM) geometry optimizations. In this way, the possibility of cation⁻π interactions was also investigated. Molecular mechanics calculations revealed that the shortest distance between the side chain of the Trp residues and the disulfide bridge is approximately 5 Å in the cyclic pentapeptide models. Based on this, three tryptophan-containing cyclopeptide models were synthesized and analyzed by nuclear magnetic resonance (NMR) spectroscopy. Experimental data and detailed molecular dynamics (MD) simulations were in good agreement with MM geometry calculations. Selected model peptides were subjected to photolytic degradation to study the correlation of structural features and the photolytic cleavage of disulfide bonds in solution. Formation of free sulfhydryl groups upon illumination with near UV light was monitored by fluorescence spectroscopy after chemical derivatization with 7-diethylamino-3-(4-maleimidophenyl)-4-methylcoumarin (CPM) and mass spectrometry. Liquid cromatography-mass spectrometry (LC-MS) measurements indicated the presence of multiple photooxidation products (e.g., dimers, multimers and other oxidated products), suggesting that besides the photolysis of disulfide bonds secondary photolytic processes take place.
紫外(UV)辐射对蛋白质的结构和功能有显著影响,这种影响与色氨酸介导的二硫键光解有关。为了研究多肽中色氨酸残基的光激发与相关二硫键还原之间的相关性,本工作分析了一系列小的环状寡肽模型。在进行分子力学(MM)几何优化后,确定了芳香侧链与二硫键之间的平均距离。通过这种方式,还研究了阳离子-π相互作用的可能性。分子力学计算表明,在环五肽模型中,色氨酸残基侧链与二硫键之间的最短距离约为 5 Å。基于此,合成了三个含色氨酸的环肽模型,并通过核磁共振(NMR)光谱进行了分析。实验数据和详细的分子动力学(MD)模拟与 MM 几何计算结果吻合良好。选择的模型肽进行光降解研究,以研究溶液中二硫键的结构特征和光解之间的相关性。用 7-二乙氨基-3-(4-马来酰亚胺基苯基)-4-甲基香豆素(CPM)化学衍生化后,通过荧光光谱监测近紫外光照射下形成的游离巯基基团,并通过质谱法进行监测。液相色谱-质谱(LC-MS)测量表明存在多种光氧化产物(例如二聚体、多聚体和其他氧化产物),这表明除了二硫键的光解外,还会发生次要的光解过程。