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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Connected and isolated CH2 populations in acyl chains and its relation to pockets of confined water in lipid membranes as observed by FTIR spectrometry
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Connected and isolated CH2 populations in acyl chains and its relation to pockets of confined water in lipid membranes as observed by FTIR spectrometry

机译:FTIR光谱观察到的酰基链中连接和分离的CH2种群及其与脂质膜中承压水囊的关系

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摘要

Analysis of the band corresponding to the frequency of vibrational symmetric stretching mode of methylene groups in the lipid acyl chains and the bands of water below and above the phase transition of different lipids by Fourier transform infrared spectroscopy gives strong support to the formation of confined water pockets in between the lipid acyl chains. Our measures and analysis consolidate the mechanism early proposed by Traüble, in the sense that water is present in kinks formed by trans-gauche isomers along the hydrocarbon tails. The formation of these regions depends on the acyl lipid composition, which determines the presence of different populations of water species, characterized by its degree of H bond coordination in fluid saturated or unsaturated lipids. The free energy excess due to the reinforcement of the water structure along few water molecules in the adjacencies of exposed membrane residues near the phase transition is a reasonable base to explain the insertion and translocation of polar peptides and aminoacid residues through the biomembrane on thermodynamic and structural grounds.
机译:通过傅立叶变换红外光谱分析脂酰基链中亚甲基的振动对称拉伸模式的频率对应的谱带以及不同脂类的相变上下的水带,通过傅里叶变换红外光谱分析为封闭水袋的形成提供了有力的支持在脂质酰基链之间。我们的措施和分析巩固了Traüble早期提出的机理,从某种意义上说,水存在于沿着烃尾部的反式gauche异构体形成的纽结中。这些区域的形成取决于酰基脂质组成,该酰基脂质组成决定了不同种类水物种的存在,其特征在于其在流体饱和或不饱和脂质中的H键配位度。由于相结构附近暴露的膜残基附近水分子沿水结构增强而产生的自由能过量,是解释极性肽和氨基酸残基通过生物膜在热力学和结构上的插入和转运的合理基础。理由。

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