Polverini Eugenia, Cugini Giuseppe, Annoni Francesca, Abbruzzetti Stefania, Viappiani Cristiano, Gensch Thomas
Dipartimento di Fisica, Università degli Studi di Parma, Viale G. P. Usberti 7/A, 43100 Parma, Italy.
Biochemistry. 2006 Apr 25;45(16):5111-21. doi: 10.1021/bi051905y.
The interaction of nile red (NR) with apomyoglobin (ApoMb) in the native (pH 7) and molten globule (pH 4) states was investigated using experimental and computational methods. NR binds to hydrophobic locations in ApoMb with higher affinity (K(d) = 25 +/- 5 microM) in the native state than in the molten globule state (K(d) = 52 +/- 5 microM). In the molten globule state, NR is located in a more hydrophobic environment. The dye does not bind to the holoprotein, suggesting that the binding site is located at the heme pocket. In addition to monitoring steady-state properties, the fluorescence emission of NR is capable of tracking submillisecond, time-resolved structural rearrangements of the protein, induced by a nanosecond pH jump. Molecular dynamics simulations were run on ApoMb at neutral pH and at pH 4. The structure obtained for the molten globule state is consistent with the experimentally available structural data. The docking of NR with the crystal structure shows that the ligand binds into the binding pocket of the heme group, with an orientation bringing the planar ring system of NR to overlap with the position of two of the heme porphyrin rings in Mb. The docking of NR with the ApoMb structure at pH 4 shows that the dye binds to the heme pocket with a slightly less favorable binding energy, in keeping with the experimental K(d) value. Under these conditions, NR is positioned in a different orientation, reaching a more hydrophobic environment in agreement with the spectroscopic data.
采用实验和计算方法研究了尼罗红(NR)与天然状态(pH 7)和熔球状态(pH 4)的脱辅基肌红蛋白(ApoMb)之间的相互作用。与熔球状态(K(d) = 52 ± 5 μM)相比,NR在天然状态下以更高的亲和力(K(d) = 25 ± 5 μM)结合到ApoMb的疏水区域。在熔球状态下,NR位于更疏水的环境中。该染料不与全蛋白结合,这表明结合位点位于血红素口袋处。除了监测稳态性质外,NR的荧光发射能够追踪由纳秒级pH跃变诱导的蛋白质亚毫秒级时间分辨结构重排。在中性pH和pH 4条件下对ApoMb进行了分子动力学模拟。获得的熔球状态结构与实验可得的结构数据一致。NR与晶体结构的对接表明,配体结合到血红素基团的结合口袋中,其取向使NR的平面环系统与肌红蛋白中两个血红素卟啉环的位置重叠。NR与pH 4条件下的ApoMb结构的对接表明,染料以略低的结合能结合到血红素口袋中,这与实验K(d)值一致。在这些条件下,NR以不同的取向定位,与光谱数据一致,进入了更疏水的环境。