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通过拉曼散射研究饱和与不饱和链磷脂的柔韧性:胆固醇对动力学和相变的影响。

Flexibility of phospholipids with saturated and unsaturated chains studied by Raman scattering: the effect of cholesterol on dynamical and phase transitions.

作者信息

Surovtsev N V, Dzuba S A

机构信息

Institute of Automation and Electrometry, Russian Academy of Sciences, Novosibirsk 630090, Russia.

Department of Physics, Novosibirsk State University, Novosibirsk 630090, Russia.

出版信息

J Chem Phys. 2014 Jun 21;140(23):235103. doi: 10.1063/1.4883237.

Abstract

Raman scattering spectra were obtained at 25-320 K for bilayers prepared from saturated 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) and mono-unsaturated 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) phospholipids, with and without cholesterol. Raman intensities were measured at modes sensitive to lipid inter-chain interactions and/or intra-chain torsional motion (asymmetric CH2 stretching at 2880 cm(-1)) and to the conformational state of lipids (C-C stretching at 1130 cm(-1)). These intensities decreased with temperature, which could be ascribed to increased lipid flexibility. For cholesterol-free and cholesterol-containing DPPC bilayers, the decrease of Raman intensities observed above ∼200 K could be related to the phenomenon of dynamical transition known for biological systems near these temperatures. For a cholesterol-free POPC bilayer, the decrease of intensity for the asymmetric CH2 stretching mode started at a lower temperature, above 100 K, while the addition of cholesterol shifted this starting temperature to a more normal ∼200 K value. The low-temperature lipid flexibility in the case of POPC was related to the abundance of free-volume holes, which disappeared in presence of cholesterol. Near gel-fluid phase transitions, Raman intensities for cholesterol-free bilayers dropped sharply, while for cholesterol-containing bilayers, they changed smoothly.

摘要

在25至320 K温度范围内,获得了由饱和的1,2 - 二棕榈酰 - sn - 甘油 - 3 - 磷酸胆碱(DPPC)和单不饱和的1 - 棕榈酰 - 2 - 油酰 - sn - 甘油 - 3 - 磷酸胆碱(POPC)磷脂制备的双层膜的拉曼散射光谱,其中一些含有胆固醇,一些不含胆固醇。在对脂质链间相互作用和/或链内扭转运动敏感的模式(2880 cm⁻¹处的不对称CH₂伸缩振动)以及对脂质构象状态敏感的模式(1130 cm⁻¹处的C - C伸缩振动)下测量拉曼强度。这些强度随温度降低,这可归因于脂质柔韧性的增加。对于不含胆固醇和含胆固醇的DPPC双层膜,在约200 K以上观察到的拉曼强度降低可能与生物系统在这些温度附近已知的动态转变现象有关。对于不含胆固醇的POPC双层膜,不对称CH₂伸缩振动模式强度的降低在较低温度(高于100 K)时开始,而添加胆固醇后,这个起始温度转变为更正常的约200 K值。POPC情况下的低温脂质柔韧性与大量自由体积空穴有关,这些空穴在存在胆固醇时消失。在接近凝胶 - 流体相转变时,不含胆固醇的双层膜的拉曼强度急剧下降,而含胆固醇的双层膜的拉曼强度则平稳变化。

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