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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Influence of lipid chain unsaturation on membrane-bound melittin: a fluorescence approach
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Influence of lipid chain unsaturation on membrane-bound melittin: a fluorescence approach

机译:脂质链不饱和对膜结合蜂毒素的影响:一种荧光方法

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摘要

Melittin, a cationic hemolytic peptide, is intrinsically fluorescent due to the presence of a single functionally important tryptophan residue. The organization of membrane-bound melittin is dependent on the physical state and composition of membranes. In particular, polyunsaturated lipids have been shown to modulate the membrane-disruptive action of melittin. Phospholipids with polyunsaturated acyl chains are known to modulate a number of physical properties of membranes and play an important role in regulating structure and function of membrane proteins. In this study, we have used melittin to address the influence of unsaturated lipids in modulating lipid-protein interactions. Our results show that fluorescence parameters such as intensity, emission maximum, polarization, lifetime and acrylamide quenching of melittin incorporated in membranes are dependent on the degree of unsaturation of lipids in membranes. Importantly, melittin in membranes composed of various unsaturated lipids shows red edge excitation shift (REES) implying that melittin is localized in a motionally restricted region in membranes. The extent of REES was found to increase drastically in membranes with increasing unsaturation, especially when the lipids contained more than two double bonds. In addition, increasing unsaturation in membranes causes a considerable change in the secondary structure of membrane-bound melittin. Taken together, our results assume significance in the overall context of the role of unsaturated lipids in membranes in the organization and function of membrane proteins and membrane-active peptides. (C) 2004 Elsevier B.V. All rights reserved.
机译:蜂毒肽,一种阳离子溶血肽,由于存在一个功能上重要的色氨酸残基,因此具有固有的荧光性。膜结合蜂毒素的组织取决于膜的物理状态和组成。特别地,多不饱和脂质已显示出调节蜂毒肽的膜破坏作用。具有多不饱和酰基链的磷脂已知可调节膜的许多物理性质,并在调节膜蛋白的结构和功能中起重要作用。在这项研究中,我们已经使用蜂毒肽来解决不饱和脂质在调节脂质-蛋白质相互作用中的影响。我们的结果表明,掺入膜中的蜂毒素的荧光参数(例如强度,最大发射,极化,寿命和丙烯酰胺淬灭)取决于膜中脂质的不饱和度。重要的是,由各种不饱和脂质组成的膜中的蜂毒肽显示出红边激发位移(REES),这表明蜂毒肽位于膜的运动受限区域中。发现REES的程度在膜中随着不饱和度的增加而急剧增加,尤其是当脂质包含两个以上的双键时。此外,膜中不饱和度的增加会引起膜结合蜂毒素的二级结构发生重大变化。综上所述,我们的结果在膜中不饱和脂质在膜蛋白和膜活性肽的组织和功能中的作用的总体背景下具有重要意义。 (C)2004 Elsevier B.V.保留所有权利。

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