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酰链不匹配驱动 DPPC/DLPC/胆固醇双层中的超晶格排列。

Acyl-chain mismatch driven superlattice arrangements in DPPC/DLPC/cholesterol bilayers.

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas 79712, USA.

出版信息

J Phys Chem B. 2010 Aug 12;114(31):10105-13. doi: 10.1021/jp105104f.

Abstract

Fluorescence and infrared spectroscopy and cholesterol oxidase activity were employed to investigate the effect of phosphatidylcholine (PC) acyl chain length mismatch on the lateral organizations of lipids in liquid-ordered dipalmitoyl-PC/dilauroyl-PC/cholesterol (DPPC/DLPC/CHOL) bilayers. Plots of steady-state fluorescence emission anisotropy of diphenylhexatriene (DPH) labeled PC (DPH-PC) embedded in the DPPC/DLPC/CHOL bilayers revealed significant peaks at several DPPC mole fractions (Y(DPPC)) when the cholesterol mole fraction (X(CHOL)) was fixed to particular values. Analogously, the DPH-PC anisotropy peaked at several critical X(CHOL)'s when Y(DPPC) was fixed. Acyl chain C-H and C horizontal lineO vibrational peak frequencies of native PC as well as the activity of cholesterol oxidase also revealed dips and peaks at similar Y(DPPC)'s. Importantly, most of the observed peaks/dips coincide with the critical mole fractions predicted by the Superlattice (SL) model. A three-dimensional map of DPH-PC anisotropy versus composition in the range 0.32 <or= X(CHOL) <or= 0.50; 0.54 <or= Y(DPPC) <or= 0.72 revealed a prominent peak at (X(CHOL), Y(DPPC)) approximately (0.42, 0.64). This suggests a simultaneous presence of two different types of superlattices, one where cholesterol is the quest molecule in a PC host lattice and another where DPPC is the guest in the DLPC host lattice. Time-resolved measurements of DPH-PC fluorescence indicated the existence of an ordered, rotationally hindered environment of acyl chains at that "critical" composition consistent with the existence of SL arrangements. We propose that beside CHOL/PC superlattices, DPPC, and DLPC as well tend to adopt regular SL-like lateral distributions relative to each other, presumably because the less hydrophobic DLPC molecule is slightly displaced toward the aqueous phase, thus allowing more room and mobility for the head groups of both DPPC and DLPC as well as for the acyl chain tails of DPPC. The parallel presence of two kinds of superlattices, that is, CHOL/PC-SL and DPPC/DLPC-SL as demonstrated here, has intriguing implications regarding lipid homeostasis of eukaryote membranes.

摘要

荧光和红外光谱以及胆固醇氧化酶活性被用来研究磷脂酰胆碱(PC)酰基链长度不匹配对有序排列的二棕榈酰磷脂酰胆碱/二肉豆蔻酰磷脂酰胆碱/胆固醇(DPPC/DLPC/CHOL)双层中脂质侧向组织的影响。当胆固醇摩尔分数(X(CHOL))固定在特定值时,二苯基己三烯(DPH)标记的 PC(DPH-PC)嵌入 DPPC/DLPC/CHOL 双层的稳态荧光发射各向异性的图谱显示出在几个 DPPC 摩尔分数(Y(DPPC))处出现显著的峰。类似地,当 Y(DPPC)固定时,DPH-PC 各向异性在几个临界 X(CHOL)处达到峰值。天然 PC 的酰基链 C-H 和 C-O 振动峰频率以及胆固醇氧化酶的活性也在类似的 Y(DPPC)处显示出下降和上升。重要的是,大多数观察到的峰/谷与超晶格(SL)模型预测的临界摩尔分数相吻合。在 0.32 <= X(CHOL) <= 0.50 和 0.54 <= Y(DPPC) <= 0.72 范围内的 DPH-PC 各向异性与组成的三维图谱显示出一个突出的峰在 (X(CHOL), Y(DPPC))约为 (0.42, 0.64)。这表明同时存在两种不同类型的超晶格,一种是胆固醇作为 PC 主晶格中的客体分子,另一种是 DPPC 作为 DLPC 主晶格中的客体分子。DPH-PC 荧光的时间分辨测量表明,在该“临界”组成下存在酰链的有序、旋转受阻环境,这与 SL 排列的存在一致。我们提出,除了 CHOL/PC 超晶格之外,DPPC 和 DLPC 也倾向于彼此采用规则的类似 SL 的侧向分布,可能是因为疏水性较小的 DLPC 分子稍微向水相位移,从而为 DPPC 和 DLPC 的头部基团以及 DPPC 的酰链尾部提供更多的空间和流动性。这里所示的两种类型的超晶格,即 CHOL/PC-SL 和 DPPC/DLPC-SL 的平行存在,对真核细胞膜的脂质动态平衡具有有趣的意义。

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