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牛血清白蛋白的差示扫描量热研究。IV. 不同碳氢链长度的阴离子表面活性剂的影响。

Differential scanning calorimetric studies on bovine serum albumin. IV. Effect of anionic surfactants with various lengths of hydrocarbon chain.

作者信息

Yamasaki M, Yamashita T, Yano H, Tatsumi K, Aoki K

机构信息

Daiichi College of Pharmaceutical Sciences, Fukuoka, Japan.

出版信息

Int J Biol Macromol. 1996 Dec;19(4):241-6. doi: 10.1016/s0141-8130(96)01133-6.

Abstract

Using defatted and SH-blocked bovine serum albumin (BSA), measurements of differential scanning calorimetry (DSC) have been made at pH 7 on the complexes of BSA and a series of sodium alkyl sulfates used were sodium decyl sulfate (SDeS), sodium octyl sulfate (SOS), sodium hexyl sulfate (SHS) and sodium ethyl sulfate (SES). Results obtained were compared with those on the system BSA-sodium dodecyl sulfate (SDS) studied previously. Two peaks P1 and P2 existed in the DSC curve of BSA. These peaks originate in the heat-induced transition of BSA. The pattern of DSC curve changed with the amount of the ligand added, i.e. with the molar mixing ratio ligand/BSA (1). The change for systems BSA-SDeS, BSA-SOS and BSA-SHS was qualitatively the same as that for the system BSA-SDS (2). Interestingly, SES, which is not a surfactant, interacts with BSA. The change for the system BSA-SES was qualitatively the same as that for the system BSA-Na2SO4. All alkyl sulfates suppressed the heat-induced transition at lower concentrations. A linear relationship was obtained for the plots of log(D/A)1 versus log CMC, where (D/A)1 is the molar mixing ratio of anionic surfactant (D) to BSA (A) at which the most heat-stable complex is formed. This suggests that the hydrophobic force has a serious effect on the formation of heat-stable complexes.

摘要

使用脱脂且巯基封闭的牛血清白蛋白(BSA),在pH值为7的条件下,对BSA与一系列烷基硫酸钠形成的复合物进行了差示扫描量热法(DSC)测量。所使用的烷基硫酸钠分别为癸基硫酸钠(SDeS)、辛基硫酸钠(SOS)、己基硫酸钠(SHS)和乙基硫酸钠(SES)。将所得结果与之前研究的BSA - 十二烷基硫酸钠(SDS)体系的结果进行了比较。BSA的DSC曲线中存在两个峰P1和P2。这些峰源于BSA的热诱导转变。DSC曲线的模式随添加配体的量而变化,即随配体/BSA的摩尔混合比(1)而变化。BSA - SDeS、BSA - SOS和BSA - SHS体系的变化在定性上与BSA - SDS体系相同(2)。有趣的是,非表面活性剂的SES与BSA相互作用。BSA - SES体系的变化在定性上与BSA - Na2SO4体系相同。所有烷基硫酸盐在较低浓度下均抑制热诱导转变。对于log(D/A)1与log CMC的关系图,得到了线性关系,其中(D/A)1是形成最耐热复合物时阴离子表面活性剂(D)与BSA(A)的摩尔混合比。这表明疏水力对耐热复合物的形成有严重影响。

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