Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Bangkok 10110, Thailand.
Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Bangkok 10110, Thailand.
J Photochem Photobiol B. 2017 Aug;173:35-42. doi: 10.1016/j.jphotobiol.2017.05.029. Epub 2017 May 22.
A new photochemical reagent, succinic acid-1(1-pyrene)methylamide (PMA-SUC), was developed to recognize the specific binding sites on model proteins, egg-white lysozyme and avidin. The interaction of the photochemical reagent with the proteins was studied by UV-Vis, fluorescence spectroscopic methods and docking description. PMA-SUC was found to bind to lysozyme and avidin with binding constants (K) of 2.4×10 and 6.7×10 (M), respectively. The fluorescence intensity of PMA-SUC decreased with increasing concentration of both proteins. Quenching of PMA-SUC fluorescence, in the absence and presence of the protein by an electron acceptor (Hexaamminecobalt(III) chloride, Co(NH)Cl) showed no significant changes in the K values (Stern-Volmer quenching constant), indicating that PMA-SUC bound to the hydrophilic sites or near the surface of the proteins. Irradiation of protein-PMA-SUC mixture, at 342nm for a period of time, in the presence of Co(NH)Cl as an electron acceptor, resulted in the cleavage of both proteins with high specificity. Binding mechanisms were studied using Molecular docking method. Molecular docking study indicated the position of PMA-SUC upon binding to the proteins by hydrogen bonding interaction with donor-acceptor within the distance of less than 5Å in the minimum of binding free energy. The docking results have supported the results obtained from the spectroscopic methods and cleavage studies.
一种新的光化学试剂琥珀酸-1(1-蒽甲基酰胺)(PMA-SUC)被开发出来,用于识别模型蛋白(卵清白蛋白溶菌酶和亲和素)上的特定结合位点。通过紫外-可见分光光度法、荧光光谱法和对接描述研究了光化学试剂与蛋白质的相互作用。发现 PMA-SUC 与溶菌酶和亲和素有结合常数(K)分别为 2.4×10 和 6.7×10(M)。PMA-SUC 的荧光强度随两种蛋白质浓度的增加而降低。在没有和存在蛋白质(电子受体六氨合钴(III)氯化物,Co(NH)Cl)的情况下,PMA-SUC 荧光的猝灭没有显著改变 K 值(Stern-Volmer 猝灭常数),表明 PMA-SUC 结合在蛋白质的亲水部位或靠近表面。在存在 Co(NH)Cl 作为电子受体的情况下,用 342nm 的光照射一段时间,蛋白质-PMA-SUC 混合物会导致两种蛋白质特异性断裂。使用分子对接方法研究了结合机制。分子对接研究表明,PMA-SUC 在结合到蛋白质时,通过氢键与供体-受体相互作用,其距离在结合自由能最小值内小于 5Å。对接结果支持了光谱方法和切割研究的结果。