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Phospholipid packing and conformation in small vesicles revealed by two-dimensional 1H nuclear magnetic resonance cross-relaxation spectroscopy.

机译:二维1H核磁共振交叉弛豫光谱法揭示了小囊泡中的磷脂堆积和构象。

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摘要

Two-dimensional 1H-NMR spectroscopy has been used to examine cross-relaxation in sonicated phospholipid vesicle systems. The observed pattern of proton cross-relaxation reveals several important features of these vesicle systems. For example, cross-relaxation rates on each monolayer of the vesicle system can be resolved and reflect the expected geometric packing constraints of the vesicle system. Small but significant magnetization-exchange is also seen to develop between the headgroup N-methyl resonance and the terminal methyl resonance. Spectra taken with deuterated lipids indicate that this exchange is not mediated by spin-diffusion down the length of the alkyl chains. Since spin-diffusion is the only process that is expected to facilitate magnetization-exchange over distances of 15-20 A, a close proximity of headgroup and terminal methyl protons in a fraction of the membrane lipid is indicated by these results. This could occur by events such as lipid interdigitation or alkyl chain bends that terminate lipid alkyl chain ends near the membrane surface.
机译:二维1H-NMR光谱已用于检查超声磷脂囊泡系统中的交叉松弛。质子交叉松弛的观察模式揭示了这些囊泡系统的几个重要特征。例如,可以解决囊泡系统的每个单层上的交叉松弛率,并反映了囊泡系统的预期几何堆积约束。在头基团N-甲基共振和末端甲基共振之间还出现了小而显着的磁化交换。用氘化脂质获得的光谱表明这种交换不是通过自旋扩散沿着烷基链的长度来介导的。由于自旋扩散是唯一有望在15-20 A的距离上促进磁化交换的过程,因此这些结果表明部分膜脂质中的头基和末端甲基质子非常接近。这可能是由于诸如脂质互指或终止膜表面附近的脂质烷基链末端的烷基链弯曲之类的事件而发生的。

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