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正构烷醇对脂质双层水合作用的影响。

Effect of n-alkanols on lipid bilayer hydration.

作者信息

Ho C, Stubbs C D

机构信息

Department of Pathology and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

Biochemistry. 1997 Sep 2;36(35):10630-7. doi: 10.1021/bi9703150.

Abstract

The effect of a homologous series of aliphatic n-alkanols on the presence of water within the head group and acyl chain region of lipid bilayers was investigated using time-resolved fluorescence spectroscopy according to a previously published approach [Ho, C., Slater, S. J., & Stubbs, C. D. (1995) Biochemistry 34, 6188-6195]. Upon addition of n-alkanols to phosphatidylcholine bilayers the fluorescence lifetime of N-[5-(dimethylamino)naphthalene-1-sulfonyl]dipalmitoylphosphatidyleth anolamine (dansyl-PE) decreased, indicative of an increased water content within the head group region, the effect being a linear function of n-alkanol chain length (C1-C8), based on the total n-alkanol concentration. The fluorescence lifetimes of 1-palmitoyl-2-[[2-[4-(6-phenyl-trans-1,3, 5-hexatrienyl)phenyl]ethyl]carbonyl]-3-sn-phosphatidylcholine (DPH-PC) and N-[[4-(6-phenyl-1,3, 5-hexatrienyl)phenyl]propyl]trimethylammonium p-toluenesulfonate (TMAP-DPH), and the fluorescence intensity ratio of the latter in D2O compared to that in H2O, were used to probe the level of water in the acyl chain region. There was a decrease in the lifetime and an increase in the D2O/H2O fluorescence intensity ratio upon addition of short-chain n-alkanols (C1-C3), suggestive of increased water content. By contrast, long-chain n-alkanols (C4-C8) increased the lifetime and decreased the ratio, suggestive of decreased water content. Acyl chain order, determined from DPH-PC fluorescence anisotropy, was decreased by all n-alkanols, indicating that the effects were not probe-dependent. The effects of short- and long-chain n-alkanols on the fluorescence lifetime of the tryptophans of gramicidin, incorporated into phosphatidylcholine bilayers as a model membrane protein, were similar to those obtained with TMAP-DPH and DPH-PC; ethanol decreased and hexanol increased the lifetime. Thus the effect of n-alkanols and general anesthetics on changes in the amount of water that may be accommodated within the acyl chain region of the bilayer is not predictable on the basis of the magnitude of effects on head group region or acyl chain order/fluidity.

摘要

根据先前发表的方法[Ho, C., Slater, S. J., & Stubbs, C. D. (1995) Biochemistry 34, 6188 - 6195],使用时间分辨荧光光谱法研究了一系列脂肪族正构烷醇对脂质双层头部基团和酰基链区域内水含量的影响。向磷脂酰胆碱双层中添加正构烷醇后,N-[5-(二甲氨基)萘-1-磺酰基]二棕榈酰磷脂酰乙醇胺(丹磺酰-PE)的荧光寿命降低,这表明头部基团区域内的水含量增加,基于总正构烷醇浓度,该效应是正构烷醇链长度(C1 - C8)的线性函数。1-棕榈酰-2-[[2-[4-(6-苯基-反式-1,3,5-己三烯基)苯基]乙基]羰基]-3- sn -磷脂酰胆碱(DPH-PC)和对甲苯磺酸N-[[4-(6-苯基-1,3,5-己三烯基)苯基]丙基]三甲基铵(TMAP-DPH)的荧光寿命,以及后者在D2O与H2O中的荧光强度比,用于探测酰基链区域中的水含量。添加短链正构烷醇(C1 - C3)后,寿命降低,D2O/H2O荧光强度比增加,这表明水含量增加。相比之下,长链正构烷醇(C4 - C8)增加了寿命并降低了该比例,这表明水含量降低。由DPH-PC荧光各向异性确定的酰基链有序性被所有正构烷醇降低,这表明这些效应不依赖于探针。作为模型膜蛋白掺入磷脂酰胆碱双层中的短杆菌肽色氨酸的荧光寿命,短链和长链正构烷醇对其的影响与用TMAP-DPH和DPH-PC获得的影响相似;乙醇降低了寿命,己醇增加了寿命。因此,基于对头部基团区域或酰基链有序性/流动性的影响程度,无法预测正构烷醇和全身麻醉剂对双层酰基链区域内可容纳水量变化的影响。

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