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FEMTOSECOND STUDIES OF PROTEIN-LIGAND HYDROPHOBIC BINDING AND DYNAMICS: HUMAN SERUM ALBUMIN

机译:蛋白质 - 配体疏水结合与动力学的飞秒研究:人血清白蛋白

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摘要

In this contribution, we report studies of the nature of the dynamics and hydrophobic binding in protein-ligand complexes of human serum albumin with 2-(2'-hydroxyphenyl)-4-methyloxazole. With femtosecond time resolution, we examined the orientational motion of the ligand, its intrinsic nuclear motions, and the lifetime changes in the hydrophobic phase. For comparisons, with similar but chemical nanocavities, we also studied the same ligand in micelles and cyclodextrins. The hydrophobic interactions in the binding crevice are much stronger than those observed in cyclodextrins and micelles. The confined geometry restrains the nonradiative decay and significantly lengthens the excited-state lifetime. The observed dynamics over the femtosecond-to-nanosecond time scale indicate that the binding structure is rigid and the local motions of the ligand are nearly "frozen" in the protein. Another major finding is the elucidation of the directed dynamics by the protein. Proton transfer and intramolecular twisting of 2-(2'-hydroxyphenyl)-4-methyloxazole were observed to evolve along two routes: one involves the direct stretching motion in the molecular plane (approx 200 fs) and is not sensitive to the environment; the second, less dominant, is related to the twisting motion (approx 3 ps) of the two heterocyclic rings and drastically slows down in the protein hydrophobic pocket.
机译:在这项贡献中,我们报告了人类血清白蛋白与2-(2'-羟苯基)-4-甲基恶唑的蛋白质-配体复合物中动力学和疏水性结合的性质的研究。使用飞秒时间分辨率,我们检查了配体的定向运动,其固有核运动以及疏水相的寿命变化。为了进行比较,我们使用相似但化学的纳米腔,还研究了胶束和环糊精中的相同配体。结合缝隙中的疏水相互作用比环糊精和胶束中的疏水相互作用强得多。受限的几何形状抑制了非辐射衰减,并显着延长了激发态寿命。在飞秒到纳秒时间范围内观察到的动力学表明,结合结构是刚性的,配体的局部运动在蛋白质中几乎被“冻结”。另一个主要发现是通过蛋白质阐明了定向动力学。观察到2-(2'-羟基苯基)-4-甲基恶唑的质子转移和分子内扭曲沿着两种途径发展:一种涉及在分子平面上的直接拉伸运动(约200 fs),并且对环境不敏感;第二,较少占优势的,与两个杂环的扭转运动(大约3 ps)有关,并且在蛋白质疏水口袋中急剧减慢。

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  • 年度 2002
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  • 正文语种 {"code":"en","name":"english","id":9}
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