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膜蛋白疏水跨膜α-螺旋片段的肽模型与磷脂酰胆碱双层膜的相互作用:差示扫描量热法和傅里叶变换红外光谱研究

Interaction of a peptide model of a hydrophobic transmembrane alpha-helical segment of a membrane protein with phosphatidylcholine bilayers: differential scanning calorimetric and FTIR spectroscopic studies.

作者信息

Zhang Y P, Lewis R N, Hodges R S, McElhaney R N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Biochemistry. 1992 Nov 24;31(46):11579-88. doi: 10.1021/bi00161a042.

DOI:10.1021/bi00161a042
PMID:1445893
Abstract

High-sensitivity differential scanning calorimetry (DSC) and Fourier transform infrared (FTIR) spectroscopy were used to study the interaction of a synthetic model hydrophobic peptide, Lys2-Gly-Leu24-Lys2-Ala-amide, and members of the homologous series of n-saturated diacylphosphatidylcholines. In the low range of peptide mole fractions, the DSC thermograms exhibited by the lipid/peptide mixtures are resolvable into two components. One of these components is fairly narrow, highly cooperative, and exhibits properties which are similar to but not identical with those of the pure lipid. In addition, the fractional contribution of this component to the total enthalpy change, the peak transition temperature, and cooperativity decrease with an increase in peptide concentration, more or less independently of acyl chain length. The other component is very broad and predominates in the high range of peptide concentration. These two components have been assigned to the chain-melting phase transitions of populations of bulk lipid and peptide-associated lipid, respectively. Moreover, when the mean hydrophobic thickness of the PC bilayer is less than the peptide hydrophobic length, the peptide-associated lipid melts at higher temperatures than does the bulk lipid and vice versa. In addition, the chain-melting enthalpy of the broad endotherm does not decrease to zero even at high peptide concentrations, suggesting that this peptide reduces but do not abolish the cooperative gel/liquid-crystalline phase transition of the lipids with which it is in contact. Our DSC results indicate that the width of the phase transition observed at high peptide concentration is inversely but discontinuously related to hydrocarbon chain length and that gel phase immiscibility occurs when the hydrophobic thickness of the bilayer greatly exceeds the hydrophobic length of the peptide. The FTIR spectroscopic data indicate that the peptide forms a very stable alpha-helix under all of our experimental conditions but that small distortions of its alpha-helical conformation are induced in response to any mismatch between peptide hydrophobic length and bilayer hydrophobic thickness. These results also indicate that the peptide alters the conformational disposition of the acyl chains in contact with it and that the resultant conformational changes in the lipid hydrocarbon chains tend to minimize the extent of mismatch of peptide hydrophobic length and bilayer hydrophobic thickness.

摘要

采用高灵敏度差示扫描量热法(DSC)和傅里叶变换红外光谱法(FTIR)研究了合成模型疏水肽Lys2-Gly-Leu24-Lys2-Ala-酰胺与正饱和二酰基磷脂酰胆碱同系物成员之间的相互作用。在低肽摩尔分数范围内,脂质/肽混合物的DSC热谱图可解析为两个成分。其中一个成分相当窄,具有高度协同性,其表现出的性质与纯脂质相似但不完全相同。此外,该成分对总焓变、峰值转变温度和协同性的分数贡献随肽浓度的增加而降低,或多或少与酰基链长度无关。另一个成分非常宽,在高肽浓度范围内占主导地位。这两个成分分别对应于大量脂质和与肽相关脂质群体的链熔化相变。此外,当磷脂酰胆碱双层的平均疏水厚度小于肽的疏水长度时,与肽相关的脂质比大量脂质在更高温度下熔化,反之亦然。此外,即使在高肽浓度下,宽吸热峰的链熔化焓也不会降至零,这表明该肽减少但并未消除与其接触的脂质的协同凝胶/液晶相变。我们的DSC结果表明,在高肽浓度下观察到的相变宽度与烃链长度呈反比但不连续相关,并且当双层的疏水厚度大大超过肽的疏水长度时会发生凝胶相不混溶。FTIR光谱数据表明,在我们所有的实验条件下,该肽都形成非常稳定的α-螺旋,但由于肽疏水长度与双层疏水厚度之间的任何不匹配,会诱导其α-螺旋构象发生小的扭曲。这些结果还表明,该肽改变了与其接触的酰基链的构象排列,并且脂质烃链中由此产生的构象变化倾向于使肽疏水长度与双层疏水厚度的不匹配程度最小化。

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