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Comparison of the Dielectric Response Obtained from Fluorescence Upconversion Measurements and Molecular Dynamics Simulations for Coumarin 153−Apomyoglobin Complexes and Structural Analysis of the Complexes by NMR and Fluorescence Methods

机译:从荧光升高测量和CoMmarin 153-奥马霉蛋白复合物的分子动力学模拟获得的介电响应的比较,并通过NMR和荧光方法对复合物的结构分析

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摘要

We present a comparison of the dielectric response obtained from fluorescence upconversion experiments and from molecular dynamics simulations of the complexes of coumarin 153 with five apomyoglobins (apoMbs): wild-type horse heart (HH-WT) and those of wild-type sperm whale (SW-WT); its two triple mutants, L29F/H64Q/V68F and H64L/V68F/P88A; and its double mutant, L29F/V68L. Comparisons between experimental and simulated solvation relaxation functions, C(t)s, for the wild-type proteins range from very good to excellent. For the three mutants we investigated, however, agreement between experiment and simulation was considerably inferior. Thus, an NMR study of the complex of the HH-WT complex apoMb, and fluorescence energy transfer and anisotropy studies of the five complexes, were performed to investigate the structures upon which the simulations were based. The NMR measurements confirm our earlier conclusions that the C153 lies in the heme pocket of the HH-WT apoMb. For the wild-type complexes, fluorescence energy transfer measurements provide two rise times, suggesting a definite spatial relationship between the two Trp donors and the C153 acceptor. These results confirm the structural integrity of the wild-type complexes and validate the initial structures used for the molecular dynamics simulations. On the other hand, the three mutants provided single exponential rise times for energy transfer, suggesting that the position of the C153 used in the simulations may have been in error or that the C153 is mobile on the time scale of the energy transfer experiment. Fluorescence anisotropy studies also suggest that the double mutant was not structurally intact. Furthermore, examination of these systems demonstrates the sensitivity of C153 to its environment and permits the observation of differences in the heme pockets. These results point to the importance of structural characterization of modified proteins used in studies of the dielectric response and suggest strategies for performing molecular dynamics simulations of modified proteins.
机译:我们展示了从荧光上转化实验中获得的介电反应的比较,以及香豆素153复合物的分子动力学模拟与五个奥马林蛋白(APOMB):野生型马心脏(HH-WT)和野生型精子鲸( SW-WT);它的两个三突变体,L29F / H64Q / V68F和H64L / V68F / P88A;及其双突变体,L29F / V68L。实验和模拟溶剂溶解功能的比较,C(t)S,用于野生型蛋白质的范围从非常好的优异。然而,对于我们调查的三个突变体,实验与模拟之间的一致性显着劣等。因此,进行了HH-WT复合Apbomb的复合物的NMR研究,以及五个络合物的荧光能量转移和各向异性研究,以研究模拟基于仿真的结构。 NMR测量确认了我们之前的结论,即C153位于HH-WT Apbomb的血红素袋中。对于野生型复合物,荧光能量转移测量提供了两个上升时间,表明两个TRP供体与C153受体之间的明确空间关系。这些结果证实了野生型复合物的结构完整性,并验证了用于分子动力学模拟的初始结构。另一方面,三个突变体提供了用于能量转移的单指数上升时间,表明模拟中使用的C153的位置可能出错,或者C153在能量转移实验的时间等级上是移动的。荧光各向异性研究还表明双突变体未在结构上完整。此外,对这些系统的检查表明C153对其环境的敏感性,并允许观察血红素口袋的差异。这些结果指出了在研究中使用的改性蛋白质的结构表征的重要性,并提出了对改性蛋白质进行分子动力学模拟的策略。

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