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富含胆固醇酯的极低密度脂蛋白的热致性质和分子动力学:疏水核心对极性表面的影响

Thermotropic properties and molecular dynamics of cholesteryl ester rich very low density lipoproteins: effect of hydrophobic core on polar surface.

作者信息

Morrisett J D, Gaubatz J W, Tarver A P, Allen J K, Pownall H J, Laggner P, Hamilton J A

出版信息

Biochemistry. 1984 Oct 23;23(22):5343-52. doi: 10.1021/bi00317a037.

DOI:10.1021/bi00317a037
PMID:6095895
Abstract

Cholesteryl ester rich very low density lipoproteins (CER-VLDL), isolated from the plasma of rabbits fed a hypercholesterolemic diet, have been studied by differential scanning calorimetry (DSC), 13C nuclear magnetic resonance (NMR), and spin-label electron paramagnetic resonance (EPR) to determine the temperature-dependent dynamics of cholesteryl esters in the hydrophobic core and of phospholipids on the polar surface. Intact CER-VLDL exhibit two DSC heating endotherms; these occur at 40-42 and 45-48 degrees C. Cholesteryl esters isolated from CER-VLDL also exhibit two DSC endotherms; these occur at 50.0 and 55.1 degrees C and correspond to the smectic----cholesteric and cholesteric----isotropic liquid-crystalline phase transitions. A model mixture containing cholesteryl linoleate, oleate, and palmitate in a ratio (0.21, 0.51, and 0.28 mol fraction) similar to that in CER-VLDL exhibited comparable DSC endotherms at 45.2 and 51.5 degrees C. CER-VLDL at 37 degrees C gave 13C NMR spectra that contained no resonances assignable to cholesteryl ring carbons but detectable broad resonances for some fatty acyl chain carbons, suggesting the cholesteryl esters were in a liquid-crystalline state. When the mixture was heated to 42 degrees C, broad ring carbon resonances became detectable; at 48 degrees C, they became narrow, indicating the cholesteryl esters were in an isotropic, liquid-like state. With increasing temperature over the range 38-60 degrees C, the resonances for cholesteryl ring carbons C3 and C6 in CER-VLDL narrowed differentially. Similar spectral changes were observed for the synthetic cholesteryl ester mixture, except they occurred at temperatures about 10 degrees C higher. These results indicate that the two DSC transitions in CER-VLDL do not directly correlate with the smectic----cholesteric and cholesteric----isotropic transitions exhibited by pure cholesteryl esters. (5-Doxylpalmitoyl)-phosphatidylcholine (5-DP-PC) and (12-doxylstearoyl)phosphatidylcholine (12-DS-PC) were used to probe the polar surface monolayer of CER-VLDL; the corresponding cholesteryl esters (5-DP-CE and 12-DS-CE) were used to probe the hydrophobic core. None of these probes in CER-VLDL detected an abrupt change in EPR order parameters, S, or maximum splitting, 2T max, over the temperature range 20-58 degrees C even though 12-DS-PC and 5-DP-PC can detect phase transitions in phospholipid bilayers and 12-DS-CE and 5-DP-CE can detect phase transitions in neat cholesteryl esters. However, 12-DS-CE and 5-DP-CE did detect a much greater acyl chain order for the neutral lipids of CER-VLDL than for those of normal triglyceride-rich VLDL.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

从喂食高胆固醇饮食的兔子血浆中分离出富含胆固醇酯的极低密度脂蛋白(CER-VLDL),并通过差示扫描量热法(DSC)、13C核磁共振(NMR)和自旋标记电子顺磁共振(EPR)进行研究,以确定疏水核心中胆固醇酯和极性表面上磷脂随温度变化的动力学。完整的CER-VLDL呈现两个DSC加热吸热峰;这些峰出现在40 - 42℃和45 - 48℃。从CER-VLDL中分离出的胆固醇酯也呈现两个DSC吸热峰;这些峰出现在50.0℃和55.1℃,分别对应近晶相 - 胆甾相和胆甾相 - 各向同性液晶相转变。一种含有亚油酸胆固醇酯、油酸胆固醇酯和棕榈酸胆固醇酯,比例(摩尔分数分别为0.21、0.51和0.28)与CER-VLDL中相似的模型混合物,在45.2℃和51.5℃呈现出类似的DSC吸热峰。37℃的CER-VLDL给出的13C NMR谱中没有可归属于胆固醇环碳的共振峰,但能检测到一些脂肪酰链碳的宽共振峰,这表明胆固醇酯处于液晶态。当混合物加热到42℃时,可检测到宽的环碳共振峰;在48℃时,它们变窄,表明胆固醇酯处于各向同性的液态。在38 - 60℃范围内,随着温度升高,CER-VLDL中胆固醇环碳C3和C6的共振峰以不同方式变窄。合成胆固醇酯混合物也观察到类似的光谱变化,只是发生温度约高10℃。这些结果表明,CER-VLDL中的两个DSC转变与纯胆固醇酯呈现的近晶相 - 胆甾相和胆甾相 - 各向同性转变没有直接关联。(5 - 脱氧棕榈酰) - 磷脂酰胆碱(5 - DP - PC)和(12 - 脱氧硬脂酰)磷脂酰胆碱(12 - DS - PC)用于探测CER-VLDL的极性表面单层;相应的胆固醇酯(5 - DP - CE和12 - DS - CE)用于探测疏水核心。在20 - 58℃温度范围内,CER-VLDL中的这些探针均未检测到EPR序参数S或最大分裂2T max的突然变化,尽管12 - DS - PC和5 - DP - PC能检测磷脂双层中的相变,12 - DS - CE和5 - DP - CE能检测纯胆固醇酯中的相变。然而,12 - DS - CE和5 - DP - CE确实检测到CER-VLDL中性脂质的酰链有序程度比正常富含甘油三酯的VLDL的酰链有序程度高得多。(摘要截断于400字)

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