Ruiz C Carnero, Hierrezuelo J M, Aguiar J, Peula-García J M
Grupo de Fluidos Estructurados y Sistemas Anfifílicos, Departamento de Física Aplicada II, Escuela Universitaria Politécnica, Universidad de Málaga, Campus de El Ejido, 29013 Málaga, Spain.
Biomacromolecules. 2007 Aug;8(8):2497-503. doi: 10.1021/bm0704121. Epub 2007 Jul 13.
The protein-surfactant system constituted by bovine serum albumin (BSA) and N-decanoyl-N-methylglucamide (MEGA-10) has been studied by using surface tension, steady-state fluorescence, and dynamic light scattering measurements. It was found that the presence of protein delays the surfactant aggregation, which was interpreted as a sign of binding between surfactant and protein. Binding studies were carried out by two different methods. First, a treatment based on surface tension measurements was used to obtain information on the number of surfactant molecules bound per protein molecule under saturation conditions. Second, the binding curve for the BSA/MEGA-10 system was determined by examining the behavior of the intrinsic BSA fluorescence upon the surfactant addition. Both approaches indicate that the binding process is essentially cooperative in nature. The results of the aggregation numbers of MEGA-10 micelles, as well as those of resonance energy transfer from tryptophan residues to 8-anilinonaphthalene-1-sulfonate, corroborate the formation of micelle-like aggregates of surfactants, smaller than the free micelles, adsorbed on the protein surface. The dynamic light scattering results were not conclusive, in the sense that it was not possible to discriminate between protein-surfactant complexes and free micelles. However, the overall results suggest the formation of "pearl necklace" complexes in equilibrium with the free micelles of the surfactant.
通过表面张力、稳态荧光和动态光散射测量,研究了由牛血清白蛋白(BSA)和N-癸酰基-N-甲基葡糖酰胺(MEGA-10)构成的蛋白质-表面活性剂体系。发现蛋白质的存在会延迟表面活性剂的聚集,这被解释为表面活性剂与蛋白质之间结合的迹象。通过两种不同方法进行了结合研究。首先,基于表面张力测量的处理方法用于获取饱和条件下每个蛋白质分子结合的表面活性剂分子数量的信息。其次,通过检查添加表面活性剂后BSA固有荧光的行为来确定BSA/MEGA-10体系的结合曲线。两种方法均表明结合过程本质上具有协同性。MEGA-10胶束聚集数的结果以及从色氨酸残基到8-苯胺基萘-1-磺酸盐的共振能量转移结果,证实了吸附在蛋白质表面的、比游离胶束小的类似胶束聚集体的形成。动态光散射结果并不确凿,因为无法区分蛋白质-表面活性剂复合物和游离胶束。然而,总体结果表明形成了与表面活性剂游离胶束处于平衡状态的“珍珠项链”复合物。