Glyn O. Phillips Hydrocolloid Research Centre at HUT, Hubei University of Technology, Wuhan, China.
Langmuir. 2012 Jul 10;28(27):10164-76. doi: 10.1021/la302063u. Epub 2012 Jun 29.
The complexation between bovine serum albumin (BSA) and sugar beet pectin (SBP) was studied in situ by coupling glucono-δ-lactone (GDL) induced acidification with dynamic light scattering and turbidity measurements. Individual measurements at specific pHs and mixing ratios were also carried out using zeta potentiometry, gel permeation chromatography-multiangle laser light scattering (GPC-MALLS), and isothermal titration calorimetry (ITC). These investigations together enabled the establishment of a phase diagram of BSA/SBP and the identification of the molecular events during protein/polysaccharide complexation in relation to the phase diagram, which showed five regions: (I) a stable region of mixed individual soluble polymers, (II) a stable region of intramolecular soluble complexes, (III) a quasi-stable region of intermolecular soluble complexes, (IV) an unstable region of intermolecular insoluble complexes, and (V) a second stable region of mixed individual soluble polymers, on lowering pH. We found for the first time that the complexation could take place well above the critical pH(c), the value that most previous studies had regarded as the onset occurrence of complexation. A model of structural transitions between the regions was proposed. The borderline between region II and region III represents the BSA/SBP stoichiometry for intramolecular soluble complex at a specific pH, while that between region III and region IV identifies the composition of the intermolecular insoluble complex. Also studied was the effect of NaCl and CaCl(2) on the phase diagram and structural transitions.
采用戊二醛(GDL)诱导的酸解耦合法,结合动态光散射和浊度测量,原位研究了牛血清白蛋白(BSA)与糖甜菜果胶(SBP)之间的络合作用。还使用zeta 电位、凝胶渗透色谱-多角度激光光散射(GPC-MALLS)和等温热滴定法(ITC)在特定 pH 值和混合比下进行了单独测量。这些研究共同建立了 BSA/SBP 的相图,并确定了与相图相关的蛋白质/多糖络合过程中的分子事件,相图显示了五个区域:(I)混合的单个可溶性聚合物的稳定区域,(II)分子内可溶性复合物的稳定区域,(III)分子间可溶性复合物的准稳定区域,(IV)分子间不溶性复合物的不稳定区域,以及(V)在降低 pH 值时,混合的单个可溶性聚合物的第二稳定区域。我们首次发现,络合作用可以在临界 pH(c)之上很好地进行,临界 pH(c)是大多数先前研究认为的络合开始发生的价值。提出了一种结构转变模型。区域 II 和区域 III 之间的边界代表特定 pH 值下分子内可溶性复合物的 BSA/SBP 化学计量比,而区域 III 和区域 IV 之间的边界则确定了分子间不溶性复合物的组成。还研究了 NaCl 和 CaCl(2) 对相图和结构转变的影响。