Burns P F, Campagnoni C W, Chaiken I M, Campagnoni A T
Biochemistry. 1981 Apr 28;20(9):2463-9. doi: 10.1021/bi00512a016.
The interaction of free and immobilized myelin basic protein (MBP) with sodium deoxycholate (DOC) and sodium dodecyl sulfate (NaDodSO4) was studied under a variety of conditions. Free MBP formed insoluble complexes with both detergents. Analysis of the insoluble complexes revealed that the molar ratio of detergent/MBP in the precipitate increased in a systematic fashion with increasing detergent concentration until the complex became soluble. At pH 4.8, equilibrium dialysis studies indicated that approximately 15 mol of NaDodSO4 could bind to the protein without precipitation occurring. Regardless of the surfactant, however, minimum protein solubility occurred when the net charge on the protein-detergent complex was between +18 and -9. Complete equilibrium binding isotherms of both detergents to the protein were obtained by using MBP immobilized on agarose. The bulk of the binding of both detergents was highly cooperative and occurred at or above the critical micelle concentration. At I = 0.1, saturation levels of 2.09 +/- 0.15 g of NaDodSO4/g of protein and 1.03 /+- 0.40 g of DOC/g of protein were obtained. Below pH 7.0 the NaDodSO4 binding isotherms revealed an additional cooperative transition corresponding to the binding of 15-20 mol of NaDodSO4/mol of protein. Affinity chromatography studies indicated that, in the presence of NaDodSO4 (but not in its absence), [125I]MBP interacted with agarose-immobilized histone, lysozyme, and MBP but did not interact with ovalbumin-agarose. These data support a model in which the detergent cross-links and causes precipitation of MBP-anionic detergent complexes. Cross-linking may occur through hydrophobic interaction between detergents electrostatically bound to different MBP molecules.
在多种条件下研究了游离型和固定化髓鞘碱性蛋白(MBP)与脱氧胆酸钠(DOC)和十二烷基硫酸钠(NaDodSO4)的相互作用。游离MBP与两种去污剂均形成不溶性复合物。对不溶性复合物的分析表明,沉淀物中去污剂/MBP的摩尔比随着去污剂浓度的增加而呈系统性增加,直至复合物变得可溶。在pH 4.8时,平衡透析研究表明,约15摩尔的NaDodSO4可与蛋白质结合而不发生沉淀。然而,无论使用何种表面活性剂,当蛋白质 - 去污剂复合物上的净电荷在+18至 -9之间时,蛋白质的溶解度最低。通过使用固定在琼脂糖上的MBP获得了两种去污剂与蛋白质的完整平衡结合等温线。两种去污剂的大部分结合具有高度协同性,且在临界胶束浓度或高于临界胶束浓度时发生。在离子强度I = 0.1时,NaDodSO4的饱和水平为2.09±0.15克/克蛋白质,DOC的饱和水平为1.03±0.40克/克蛋白质。在pH 7.0以下,NaDodSO4结合等温线显示出另一个协同转变,对应于15 - 20摩尔NaDodSO4/摩尔蛋白质的结合。亲和色谱研究表明,在存在NaDodSO4的情况下(但不存在时则不然),[125I]MBP与琼脂糖固定的组蛋白、溶菌酶和MBP相互作用,但不与琼脂糖结合的卵清蛋白相互作用。这些数据支持一种模型,即去污剂交联并导致MBP - 阴离子去污剂复合物沉淀。交联可能通过静电结合到不同MBP分子上的去污剂之间的疏水相互作用而发生。