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人血清白蛋白蛋白内的质子转移反应动力学。

Proton-transfer reaction dynamics within the human serum albumin protein.

机构信息

Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica, and INAMOL, Universidad de Castilla-La Mancha, Avenida Carlos III, S/N, 45071 Toledo, Spain.

出版信息

J Phys Chem B. 2011 Jun 16;115(23):7637-47. doi: 10.1021/jp200294q. Epub 2011 Apr 8.

Abstract

We report on femto- to nanosecond studies of the excited state intermolecular proton transfer (ESPT) reaction of trisodium 8-hydroxypyrene-1,3,6-trisulfonate (pyranine, HPTS) with the human serum albumin (HSA) protein. The formed robust 1:1 complexes (K(eq) = (2.6 ± 0.1) × 10(6) M(-1)) show both photoacid (∼430 nm) and conjugated photobase (∼500 nm) emissions of the caged HPTS in its protonated structure. The proton-transfer reactions in these complexes proceed in a large time window, spanning from 150 fs to ∼1.2 ns. The ultrafast component reflects a direct H-bond breaking and making in the robust complexes, involving the carboxylate groups of the amino acids, while the slowest one is arising from the slow dynamics of the so-called biological water. Additional time constants of the caged photoacid to give the conjugated photobase are observed, assigned to the ESPT reaction within "loose" complexes (3 to tens of picoseconds), and 130 ps and 1.2 ns due to the slow dynamics of the water molecules around the protein residues and involved in the proton transfer. The fs-ns anisotropy measurements confirm the robustness of the HPTS:HSA complexes. Our results indicate that, even though robust 1:1 complexes between HPTS and the HSA are formed, the system is heterogeneous, due to different possible interactions of the dye with the inside/outside parts of the protein. Furthermore, we find lower values of the initial anisotropy (r(0)) in the protein (0.33) and in γ-CD (0.28) in comparison with buffered aqueous solution (0.385). We propose that caging HPTS by the HSA protein and by the cyclodextrin affects the electronic redistribution in a different degree of mixing between the (1)L(a) and (1)L(b) states in the formed deprotonated form, for which the interactions of the sulfonate groups with the surroundings should play a key role.

摘要

我们报告了三钠 8-羟基荧蒽-1,3,6-三磺酸(HPTS,荧蒽素)与人血清白蛋白(HSA)之间的飞秒到纳秒激发态分子内质子转移(ESPT)反应的超快研究。形成的强 1:1 配合物(K(eq) = (2.6 ± 0.1) × 10(6) M(-1)) 显示出质子化结构中 HPTS 的光酸(430nm)和共轭光碱(500nm)发射。这些配合物中的质子转移反应在一个大的时间窗口中进行,跨越 150fs 至~1.2ns。超快成分反映了强配合物中直接的 H 键断裂和形成,涉及氨基酸的羧酸盐基团,而最慢的成分则源于所谓的生物水的缓慢动力学。观察到笼状光酸产生共轭光碱的附加时间常数,归因于“松散”配合物(3 到数十皮秒)内的 ESPT 反应,以及 130ps 和 1.2ns 归因于蛋白质残基周围水分子的缓慢动力学和参与质子转移。飞秒-纳秒各向异性测量证实了 HPTS:HSA 配合物的坚固性。我们的结果表明,即使形成了 HPTS 与 HSA 之间的强 1:1 配合物,但由于染料与蛋白质内外部分的不同可能相互作用,该系统是不均匀的。此外,我们发现蛋白质(0.33)和γ-CD(0.28)中初始各向异性(r(0))的值低于缓冲水溶液(0.385)。我们提出,HSA 蛋白和环糊精对 HPTS 的笼状化以不同程度影响形成的去质子化形式中(1)L(a)和(1)L(b)态之间的电子再分布,其中磺酸盐基团与周围环境的相互作用应发挥关键作用。

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