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Phospholipid Motional Characteristics in a Dry Biological System

机译:干生物系统中的磷脂运动特征

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摘要

Analysis of the proton-decoupled 31P-nuclear magnetic resonance (NMR) spectrum of fully hydrated Typha latifolia pollen revealed the presence of two main peaks: A broad asymmetrical component of a `bilayer' lineshape and a much narrower symmetrical component originating from phosphorus compounds undergoing rapid isotropic motion. From (a) 31P-NMR experiments on the hydrated total pollen phospholipids, (b) saturation transfer 31P-NMR experiments, and (c) the fraction of lipid phosphate in the pollen, it can be concluded that the great majority of the endogenous phospholipids are arranged in extended bilayers in which the lipid phosphates undergo fast (τc < 10−6 second) long axis rotation. This bilayer arrangement of phospholipids was observed in the pollen down to hydration levels of at least 10.9% moisture content. At the lowest level of pollen hydration examined (5.2%) the 31P-NMR spectrum had a solid state lineshape demonstrating that all the phosphorus-containing compounds (including the phospholipids) were virtually immobile.
机译:对完全水合的香蒲花粉的质子去耦的 31 P-核磁共振波谱进行分析后发现,存在两个主峰:“双层”线形的宽不对称成分和很多源于经历快速各向同性运动的磷化合物的较窄对称成分。从(a)关于水合总花粉磷脂的 31 P-NMR实验,(b)饱和转移 31 P-NMR实验和(c)脂质磷酸酯级分在花粉中,可以得出结论,绝大多数内源磷脂排列在扩展的双层中,其中脂质磷酸酯经历了快速的(τc<10 -6 秒)长轴旋转。在花粉中观察到磷脂的这种双层排列直至水合含量至少为10.9%水分含量。在最低的花粉水合作用水平(5.2%)下, 31 P-NMR光谱呈固态线形,表明所有含磷化合物(包括磷脂)几乎都不能移动。

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