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低pH条件下可交换载脂蛋白——飞蝗载脂蛋白III的构象变化:与脂质结合的相关性

Conformational changes of an exchangeable apolipoprotein, apolipophorin III from Locusta migratoria, at low pH: correlation with lipid binding.

作者信息

Weers P M, Kay C M, Ryan R O

机构信息

Lipid Biology in Health and Disease Research Group, Children's Hospital Oakland Research Institute, 5700 Martin Luther King Jr. Way, Oakland, California 94609, USA.

出版信息

Biochemistry. 2001 Jun 26;40(25):7754-60. doi: 10.1021/bi010410f.

Abstract

Locusta migratoria apolipophorin III (apoLp-III) is a helix bundle exchangeable apolipoprotein that reversibly binds to lipoprotein surfaces. Structural reorganization of its five amphipathic alpha-helices enables the transition from the lipid-free to lipid-bound state. ApoLp-III-induced transformation of dimyristoylphosphatidylcholine (DMPC) bilayer vesicles into smaller discoidal complexes is enhanced as a function of decreasing pH, with maximal transformation occurring at pH 3.5. Over the entire pH range studied, apoLp-III retains nearly all of its secondary structure content. Whereas no changes in fluorescence emission maximum of the two Trp residues in apoLp-III were observed in the pH range from 7.0 to 4.0, a further decrease in pH resulted in a strong red shift. Near-UV circular dichroism spectra of apoLp-III showed well-defined extrema (at 286 and 292 nm) between pH 7.0 and pH 4.0, which were attributed to Trp115. Below pH 4.0, these extrema collapsed, indicating a less rigid environment for Trp115. Similarly, the fluorescence intensity of 8-anilinonaphthalene-1-sulfonate in the presence of apoLp-III increased 4-fold below pH 4.0, indicating exposure of hydrophobic sites in the protein in this pH range. Taken together, the data suggest two conformational states of the protein. In the first state between pH 7.0 and pH 4.0, apoLp-III retains a nativelike helix bundle structure. The second state, found between pH 3.0 and pH 4.0, is reminiscent of a molten globule, wherein tertiary structure contacts are disrupted without a significant loss of secondary structure content. In both states DMPC vesicle transformation is enhanced by lowering the solution pH, reaching an optimum in the second state. The correlation between tertiary structure and lipid binding activity suggests that helix bundle organization is a determinant of apoLp-III lipid binding activity.

摘要

飞蝗载脂蛋白III(apoLp-III)是一种螺旋束可交换载脂蛋白,能可逆地结合到脂蛋白表面。其五个两亲性α-螺旋的结构重组使得它能够从无脂状态转变为脂结合状态。apoLp-III诱导二肉豆蔻酰磷脂酰胆碱(DMPC)双层囊泡转变为更小的盘状复合物的过程会随着pH值的降低而增强,在pH 3.5时发生最大程度的转变。在所研究的整个pH范围内,apoLp-III几乎保留了其所有二级结构含量。在pH值从7.0到4.0的范围内,未观察到apoLp-III中两个色氨酸残基的荧光发射最大值发生变化,但pH值进一步降低会导致强烈的红移。apoLp-III的近紫外圆二色光谱在pH 7.0和pH 4.0之间显示出明确的极值(在286和292 nm处),这归因于色氨酸115。在pH值低于4.0时,这些极值消失,表明色氨酸115所处的环境刚性降低。同样,在apoLp-III存在的情况下,8-苯胺基萘-1-磺酸盐的荧光强度在pH值低于4.0时增加了4倍,表明在这个pH范围内蛋白质中的疏水位点暴露出来。综上所述,这些数据表明该蛋白质存在两种构象状态。在pH 7.0到pH 4.0之间的第一种状态下,apoLp-III保留了类似天然的螺旋束结构。在pH 3.0到pH 4.0之间发现的第二种状态让人联想到熔球态,其中三级结构接触被破坏,但二级结构含量没有显著损失。在这两种状态下,降低溶液pH值都会增强DMPC囊泡的转变,在第二种状态下达到最佳效果。三级结构与脂质结合活性之间的相关性表明,螺旋束组织是apoLp-III脂质结合活性的一个决定因素。

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