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人血清白蛋白白藜芦醇脂肪酸配体的设计、合成与光谱研究

Design, synthesis and spectroscopic studies of resveratrol aliphatic acid ligands of human serum albumin.

作者信息

Jiang Yu Lin

机构信息

Department of Chemistry, College of Arts and Sciences, East Tennessee State University, Johnson City, TN 37614, United States.

出版信息

Bioorg Med Chem. 2008 Jun 15;16(12):6406-14. doi: 10.1016/j.bmc.2008.05.002. Epub 2008 May 3.

Abstract

As one of the natural polyphenols, resveratrol possesses hydroxyl substituted trans-stilbene structure and exerts impact on health by inhibiting multiple human enzymes, such as cyclooxygenase, F1 ATPase, and tyrosinase. Resveratrol has to be bound by human serum albumin (HSA) to keep a high concentration in serum, since its solubility is low in water. To improve water solubility and bioavailability, two resveratrol aliphatic acids and their esters have been designed and synthesized. The solubilities of the resveratrol and its derivatives have been measured using a standard procedure. The two aliphatic acids showed better solubilities in pure water and phosphate buffer (pH 7). The binding affinities of resveratrol derivatives for HSA were also measured, and the drug-protein interaction mechanism was investigated using fluorescence, UV-vis, and NMR spectroscopies. Interestingly, resveratrol hexanoic acid (5) was found to be a much better ligand (K(a)=(6.70+/-0.10)x10(6) M(-1)) for HSA than resveratrol (K(a)=(1.64+/-0.07)x10(5) M(-1)), and there was 41-fold improvement for the binding affinity. It was the first time that the increase of fluorescence of resveratrol moiety was observed during the binding to HSA, suggesting that 5 should be bound tightly by HSA. The UV-vis absorption spectroscopy revealed a maximum absorption shift from 318 to 311 nm with decreasing intensity by 20% upon complexation, suggesting that the pi-pi conjugation of the stilbene structure was impaired during the binding. Although HSA was reported to have only one binding site for resveratrol, the Job's and molar ratio plots suggested that HSA should bind two molecules of 5. NMR study suggested that phenyl group (B ring) in the center of the molecule of 5 should be involved in the pi-pi stacking interactions with HSA aromatic amino acid residues. Molecular geometry calculation of 5 with Spartan software showed that the stilbene structure had two conformers, orthogonal and planar ones. The former (E=-1.432 KJ/mol) was more stable than the latter (E=-0.128 KJ/mol), suggesting that the former should be the conformer of 5 in the complexation with HSA.

摘要

白藜芦醇作为天然多酚之一,具有羟基取代的反式芪结构,通过抑制多种人体酶(如环氧化酶、F1 ATP酶和酪氨酸酶)对健康产生影响。由于白藜芦醇在水中的溶解度较低,它必须与人血清白蛋白(HSA)结合才能在血清中保持高浓度。为了提高水溶性和生物利用度,设计并合成了两种白藜芦醇脂肪酸及其酯。采用标准程序测定了白藜芦醇及其衍生物的溶解度。这两种脂肪酸在纯水和磷酸盐缓冲液(pH 7)中表现出更好的溶解度。还测定了白藜芦醇衍生物与HSA的结合亲和力,并使用荧光光谱、紫外可见光谱和核磁共振光谱研究了药物 - 蛋白质相互作用机制。有趣的是,发现白藜芦醇己酸酯(5)对HSA来说是比白藜芦醇更好的配体(K(a) = (6.70 ± 0.10)×10(6) M(-1)),而白藜芦醇的K(a) = (1.64 ± 0.07)×10(5) M(-1),其结合亲和力提高了41倍。这是首次在白藜芦醇与HSA结合过程中观察到白藜芦醇部分荧光增强,表明5应该与HSA紧密结合。紫外可见吸收光谱显示,络合后最大吸收峰从318 nm移至311 nm,强度降低20%,表明芪结构的π - π共轭在结合过程中受到破坏。尽管据报道HSA对白藜芦醇只有一个结合位点,但Job曲线和摩尔比图表明HSA应该结合两个5分子。核磁共振研究表明,5分子中心的苯基(B环)应参与与HSA芳香族氨基酸残基的π - π堆积相互作用。用Spartan软件对5进行分子几何计算表明,芪结构有两种构象,正交构象和平板构象。前者(E = -1.432 KJ/mol)比后者(E = -0.128 KJ/mol)更稳定,表明前者应该是5与HSA络合时的构象。

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