首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Thermochemistry of the specific binding of C12 surfactants to bovine serum albumin
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Thermochemistry of the specific binding of C12 surfactants to bovine serum albumin

机译:C12表面活性剂与牛血清白蛋白特异性结合的热化学

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The specific binding to bovine serum albumin (BSA) of anionic and non-ionic surfactants with C12 acyl chains has been studied by high sensitivity isothermal titration calorimetry. This method proved particularly effective in resolving the binding of anionic surfactants into separate classes of sites with different affinity. For sodium dodecylsulfate (SDS) the measured binding curves could be rationalized as association to two classes (high affinity/low affinity) of sites comprising, respectively, three and six similar (i.e. thermodynamically equivalent), independent sites. Changes in the thermodynamic functions enthalpy, standard free energy, standard entropy and heat capacity could be discerned for each class of binding site, as well as for micelle formation. These data suggest that binding to low affinity sites (in analogy with micelle formation) exhibits energetic parameters; in particular, a large negative change in heat capacity, which is characteristic of hydrophobic interactions. The thermodynamics of high affinity binding, on the other hand, is indicative of other dominant forces; most likely electrostatic interactions. Other anionic ligands investigated (laurate and dodecyl benzylsulfonate) showed a behavior similar to SDS, the most significant difference being the high affinity binding of the alkylbenzyl sulfonate. For this ligand, the thermodynamic data is indicative of a more loosely associated complex than for SDS and laurate. BSA was found to bind one or two of the non-ionic surfactants (NIS) hepta- or penta(ethylene glycol) monododecyl ether (C12EO7 and C12EO5) with binding constants about three orders of magnitude lower than for SDS. Hence, the free energy of the surfactant in the weakly bound BSA-NIS complex is only slightly favored over the micellar state. The binding process is characterized by very large exothermic enthalpy changes (larger than for the charged surfactants) and a large, positive increment in heat capacity. These observations cannot be reconciled with a molecular picture based on simple hydrophobic condensation onto non-polar patches on the protein surface.
机译:通过高灵敏度等温滴定热法研究了具有C12酰基链的阴离子和非离子表面活性剂与牛血清白蛋白(BSA)的特异性结合。事实证明,该方法特别有效地解决了将阴离子表面活性剂与具有不同亲和力的不同部位结合的问题。对于十二烷基硫酸钠(SDS),可以将测得的结合曲线合理化为与分别包含三个和六个相似(即热力学等价)的独立位点的两类位点(高亲和力/低亲和力)的关联。对于每类结合位点以及胶束形成,热力学函数焓,标准自由能,标准熵和热容量的变化都可以被识别出来。这些数据表明与低亲和力位点的结合(类似于胶束形成)表现出高能参数。特别地,热容量的大的负变化是疏水相互作用的特征。另一方面,高亲和力结合的热力学表明了其他主导力。最可能的静电相互作用。研究的其他阴离子配体(月桂酸酯和十二烷基苄基磺酸盐)表现出与SDS相似的行为,最显着的差异是烷基苄基磺酸盐的高亲和力结合。对于该配体,热力学数据表明与SDS和月桂酸酯相比,缔合体的结合更松散。发现BSA以一种比SDS低约三个数量级的结合常数结合一种或两种非离子表面活性剂(NIS)七或五(乙二醇)单十二烷基醚(C12EO7和C12EO5)。因此,与胶束态相比,弱结合的BSA-NIS复合物中表面活性剂的自由能仅得到轻微的支持。结合过程的特征是放热焓变非常大(比带电表面活性剂大),并且热容量大而正的增加。这些观察结果不能与基于简单疏水性缩合到蛋白质表面非极性斑块上的分子图像相吻合。

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