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磷脂双层膜的核磁共振研究。影响脂质分布的一些因素。

NMR studies on phospholipid bilayers. Some factors affecting lipid distribution.

作者信息

Berden J A, Barker R W, Radda G K

出版信息

Biochim Biophys Acta. 1975 Jan 28;375(2):186-208. doi: 10.1016/0005-2736(75)90188-1.

Abstract
  1. 1H-NMR and 31P-NMR are used to measure the outside/inside distribution of phospholipids in mixed vesicles. 2. Ferricyanide is a suitable shift reagent for measuring the outside/inside ratio of lecithin using 1H-NMR even when the phospholipid mixture contains negative lipids. 3. 31P-NMR can be used to measure the distribution of all phospholipids present provided the resonances are separated. 4. At 36.4 MHz the inside and outside phosphorus in lecithin vesicles have different chemical shifts. The separation at room temperature is 4-5 Hz and the individual linewidths are about 4Hz. 5. In a mixture of lecithin with phosphatidylethanolamine the latter has preference for the inside layer of the bilayer. The same holds for mixtures of lecithin with phosphatidylserine, phosphatidylinositol and phosphatidic acid. 6. In mixtures of lecithin and phosphatidylserine the preference of the latter for the inside is increased at lower pH under which conditions the negative charge of the phosphatidylserine is decreased. 7. In mixtures of lecithin with sphingomyelin the lecithin has a higher concentration at the inside. 8. The effect of vesicle size on the 31P-NMR linewidth and the temperature dependence of this linewidth is in agreement with the conclusion of Berden et al. (FEBS Lett. (1974), 46, 55-58) that the chemical shift anisotropy, modulated by the isotropic tumbling of the vesicles, makes a contribution to the linewidth. The chemical shift difference between outside and inside phosphorus can be used as a parameter for the measurement of the packing density at the inside and of the size of the vesicles. 9. It is concluded that both charge and the packing properties of the head group are major factors in determining the distribution of phospholipids in mixed vesicles.
摘要
  1. 1H-NMR和31P-NMR用于测量混合囊泡中磷脂的外/内部分布。2. 即使磷脂混合物中含有带负电荷的脂质,铁氰化物仍是使用1H-NMR测量卵磷脂外/内比例的合适位移试剂。3. 只要共振峰分开,31P-NMR可用于测量所有存在的磷脂的分布。4. 在36.4 MHz时,卵磷脂囊泡中的内部和外部磷具有不同的化学位移。室温下的分离度为4 - 5 Hz,单个线宽约为4Hz。5. 在卵磷脂与磷脂酰乙醇胺的混合物中,后者优先存在于双层膜的内层。卵磷脂与磷脂酰丝氨酸、磷脂酰肌醇和磷脂酸的混合物也是如此。6. 在卵磷脂和磷脂酰丝氨酸的混合物中,在较低pH值下,后者对内部的偏好性增加,在这种条件下磷脂酰丝氨酸的负电荷减少。7. 在卵磷脂与鞘磷脂的混合物中,卵磷脂在内部的浓度较高。8. 囊泡大小对31P-NMR线宽的影响以及该线宽的温度依赖性与Berden等人(《欧洲生物化学学会联合会快报》(1974年),46,55 - 58)的结论一致,即由囊泡的各向同性翻滚调制的化学位移各向异性对线宽有贡献。外部和内部磷之间的化学位移差异可作为测量内部堆积密度和囊泡大小的参数。9. 得出的结论是,电荷和头部基团的堆积性质都是决定混合囊泡中磷脂分布的主要因素。

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