首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Spectroscopic Investigation of the Effect of Salt on Binding of Tartrazine with Two Homologous Serum Albumins: Quantification by Use of the Debye-Huckel Limiting Law and Observation of Enthalpy-Entropy Compensation
【24h】

Spectroscopic Investigation of the Effect of Salt on Binding of Tartrazine with Two Homologous Serum Albumins: Quantification by Use of the Debye-Huckel Limiting Law and Observation of Enthalpy-Entropy Compensation

机译:盐对酒石黄与两种同源血清白蛋白结合的影响的光谱研究:使用德比-赫克尔极限定律进行定量和观察焓-熵补偿

获取原文
获取原文并翻译 | 示例
           

摘要

Formation of ion pair between charged molecule and protein can lead to interesting biochemical phenomena. We report the evolution of thermodynamics of the binding of tartrazine, a negatively charged azo colorant, and serum albumins with salt. The dye binds predominantly electrostatically in low buffer strengths; however, on increasing salt concentration, affinity decreases considerably. The calculated thermodynamic parameters in high salt indicate manifestation of nonelectrostatic interactions, namely, van der Waals force and hydrogen bonding. Site-marker competitive binding studies and docking simulations indicate that the dye binds with HSA in the warfarin site and with BSA at the interface of warfarin and ibuprofen binding sites. The docked poses indicate nearby amino acid positive side chains, which are possibly responsible for electrostatic interaction. Using the Debye-Huckel interionic attraction theory for binding equilibria, it is shown that, for electrostatic binding the calculated free energy change increases linearly with square root of ionic strength. Also UV-vis, fluorescence, CD data indicate a decrease of interaction with salt concentration. This study quantitatively relates how ionic strength modulates the strength of the protein-ligand electrostatic interaction. The binding enthalpy and entropy have been found to compensate one another. The enthalpy-entropy compensation (EEC), general property of weak intermolecular interactions, has been discussed.
机译:在带电分子和蛋白质之间形成离子对可导致有趣的生化现象。我们报告了tartrazine,带负电荷的偶氮染料和血清白蛋白与盐结合的热力学的演变。染料主要以静电作用以较低的缓冲强度结合。但是,随着盐浓度的增加,亲和力会大大降低。计算出的高盐热力学参数表明存在非静电相互作用,即范德华力和氢键。位点标记竞争结合研究和对接模拟表明,该染料在华法林位点与HSA结合,在华法林和布洛芬结合位点的界面与BSA结合。停靠的位姿表明附近的氨基酸阳性侧链可能与静电相互作用有关。使用Debye-Huckel离子间吸引理论进行结合平衡,结果表明,对于静电结合,计算出的自由能变化随离子强度的平方根线性增加。紫外可见,荧光,CD数据也表明与盐浓度的相互作用降低。这项研究定量关系到离子强度如何调节蛋白质-配体静电相互作用的强度。已经发现结合焓和熵相互补偿。讨论了焓-熵补偿(EEC),即弱分子间相互作用的一般性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号