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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Interaction of water-soluble amino acid Schiff base complexes with bovine serum albumin: Fluorescence and circular dichroism studies
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Interaction of water-soluble amino acid Schiff base complexes with bovine serum albumin: Fluorescence and circular dichroism studies

机译:水溶性氨基酸席夫碱配合物与牛血清白蛋白的相互作用:荧光和圆二色性研究

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Fluorescence spectroscopy in combination with circular dichroism (CD) spectroscopy were used to investigate the interaction of water-soluble amino acid Schiff base complexes, [Zn(L-1,L-2)(phen)] where phen is 1,10-phenanthroline and H2L1,2 is amino acid Schiff base ligands, with bovine serum albumin (BSA) under the physiological conditions in phosphate buffer solution adjusted to pH 7.0. The quenching mechanism of fluorescence was suggested as static quenching according to the Stern-Volmer equation. Quenching constants were determined using the Stern-Volmer equation to provide a measure of the binding affinity between amino acid Schiff base complexes and BSA. The thermodynamic parameters Delta G, Delta H and Delta S at different temperatures (298,310 and 318 K) were calculated. The results indicate that the hydrophobic and hydrogen bonding interactions play a major role in [Zn(L-1)(phen)]-BSA association, whereas hydrophobic and electrostatic interactions participate a main role in [Zn(L-2)(phen)]-BSA binding process. Binding studies concerning the number of binding sites and apparent binding constant K-b were performed by fluorescence quenching method. The distance R between the donor (BSA) and acceptor (amino acid Schiff base complexes) has been obtained utilizing fluorescence resonant energy transfer (FRET). Furthermore, CD spectra were used to investigate the structural changes of the BSA molecule with the addition of amino acid Schiff base complexes. The results indicate that the interaction of amino acid Schiff base complexes with BSA leads to changes in the secondary structure of the protein. Fractional contents of the secondary structure of BSA (f(alpha),f(beta),f(turn) and f(random)) were calculated with and without amino acid Schiff base complexes utilizing circular dichroism spectroscopy. Our results clarified that amino acid Schiff base complexes could bind to BSA and be effectively transported and eliminated in the body, which could be a useful guideline for further drug design. (C) 2008 Elsevier B.V. All rights reserved.
机译:荧光光谱结合圆二色性(CD)光谱用于研究水溶性氨基酸席夫碱配合物[Zn(L-1,L-2)(phen)]的相互作用,其中phen为1,10-菲咯啉H2L1,2是氨基酸席夫碱配体,在生理条件下将牛血清白蛋白(BSA)在磷酸盐缓冲液中的pH值调节至7.0。根据Stern-Volmer方程,建议将荧光的猝灭机理称为静态猝灭。使用Stern-Volmer方程确定淬灭常数,以提供氨基酸Schiff碱复合物和BSA之间结合亲和力的量度。计算了在不同温度(298,310和318 K)下的热力学参数Delta G,Delta H和DeltaS。结果表明,疏水和氢键相互作用在[Zn(L-1)(phen)]-BSA缔合中起主要作用,而疏水和静电相互作用在[Zn(L-2)(phen)中起主要作用。 ] -BSA绑定过程。通过荧光猝灭法进行有关结合位点数目和表观结合常数K-b的结合研究。利用荧光共振能量转移(FRET)已经获得了供体(BSA)和受体(氨基酸席夫碱配合物)之间的距离R。此外,CD光谱用于研究添加氨基酸Schiff碱复合物的BSA分子的结构变化。结果表明氨基酸席夫碱复合物与牛血清白蛋白的相互作用导致蛋白质二级结构的变化。利用圆二色性光谱,在有和没有氨基酸席夫碱配合物的情况下,计算BSA二级结构的分数含量(fα,fβ,fturn和frandom)。我们的研究结果表明氨基酸Schiff碱复合物可以与BSA结合并在体内有效转运和消除,这可能是进一步药物设计的有用指导。 (C)2008 Elsevier B.V.保留所有权利。

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