College of Chemistry and Bioengineering, Guilin University of Technology, Guilin, China.
Luminescence. 2019 Nov;34(7):749-758. doi: 10.1002/bio.3669. Epub 2019 Jul 1.
Three PBDEs (BDE25, BDE47, and BDE154) were selected to investigate the interactions between PBDEs and hen egg white lysozyme (HEWL) by molecular modeling, fluorescence spectroscopy, and FT-IR spectra. The docking results showed that hydrogen bonds were formed between BDE25 and residue TRP63 and between BDE47 and TRP63 with bond lengths of 2.178 Å and 2.146 Å, respectively. The molecular dynamics simulations indicated that van der Waals forces played a predominant role in the binding of three PBDEs to HEWL. The observed fluorescence quenching can be attributed to the formation of complexes between HEWL and PBDEs, and the quenching mechanism is a static quenching. According to Förster's non-radiative energy transfer theory, the binding distances r were < 7 nm, indicating a high probability of energy transfer from HEWL to the three PBDEs. The synchronous fluorescence showed that the emission maximum wavelength of tryptophan (TRP) residues emerged a red-shift. FT-IR spectra indicated that BDE25, BDE47 and BDE154 induced the α-helix percentage of HEWL decreased from 32.70% ± 1.64% to 28.27% ± 1.41%, 27.50% ± 1.38% and 29.78% ± 1.49%, respectively, whereas the percentage of random coil increased from 26.67% ± 1.33% to 27.60% ± 1.38%, 29.18% ± 1.46% and 30.59% ± 1.53%, respectively.
选取三种多溴联苯醚(BDE25、BDE47 和 BDE154),通过分子模拟、荧光光谱和傅里叶变换红外光谱研究了多溴联苯醚与鸡卵清白蛋白溶菌酶(HEWL)的相互作用。对接结果表明,BDE25 与残基 TRP63 之间以及 BDE47 与 TRP63 之间形成了氢键,键长分别为 2.178 Å 和 2.146 Å。分子动力学模拟表明,范德华力在三种多溴联苯醚与 HEWL 的结合中起主要作用。观察到的荧光猝灭可以归因于 HEWL 与多溴联苯醚形成复合物,猝灭机制是静态猝灭。根据福斯特非辐射能量转移理论,结合距离 r 均<7nm,表明 HEWL 向三种多溴联苯醚转移能量的概率很高。同步荧光表明色氨酸(TRP)残基的发射最大波长出现红移。傅里叶变换红外光谱表明,BDE25、BDE47 和 BDE154 使 HEWL 的α-螺旋百分比从 32.70%±1.64%降低到 28.27%±1.41%、27.50%±1.38%和 29.78%±1.49%,而无规卷曲的百分比从 26.67%±1.33%增加到 27.60%±1.38%、29.18%±1.46%和 30.59%±1.53%。