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离子强度对膜结合蜂毒肽的组织和动力学的影响。

Effect of ionic strength on the organization and dynamics of membrane-bound melittin.

作者信息

Raghuraman H, Ganguly Sourav, Chattopadhyay Amitabha

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500 007, India.

出版信息

Biophys Chem. 2006 Nov 20;124(2):115-24. doi: 10.1016/j.bpc.2006.06.011. Epub 2006 Jun 23.

Abstract

Melittin, a cationic hemolytic peptide, is intrinsically fluorescent due to the presence of a single functionally important tryptophan residue. We have previously shown that the sole tryptophan of melittin is localized in a motionally restricted environment in the membrane interface. We have monitored the effect of ionic strength on the organization and dynamics of membrane-bound melittin utilizing fluorescence and circular dichroism (CD) spectroscopic approaches. Our results show that red edge excitation shift (REES) of melittin bound to membranes is sensitive to the change in ionic strength of the medium. This could be attributed to a change in the immediate environment around melittin tryptophan with increasing ionic strength due to differential solvation of ions. Interestingly, the rotational mobility of melittin does not appear to be affected with change in ionic strength. In addition, fluorescence parameters such as lifetime and acrylamide quenching of melittin indicate an increase in water penetration in the membrane interface upon increasing ionic strength. Our results suggest that the solvent dynamics and water penetration in the interfacial region of the membranes are significantly affected at physiologically relevant ionic strength. These results assume significance in the overall context of the influence of ionic strength in the organization and dynamics of membrane proteins and membrane-active peptides.

摘要

蜂毒肽是一种阳离子溶血肽,由于存在单个具有功能重要性的色氨酸残基而具有内在荧光。我们之前已经表明,蜂毒肽唯一的色氨酸位于膜界面中运动受限的环境中。我们利用荧光和圆二色性(CD)光谱方法监测了离子强度对膜结合蜂毒肽的组织和动力学的影响。我们的结果表明,与膜结合的蜂毒肽的红边激发位移(REES)对介质离子强度的变化敏感。这可能归因于随着离子强度增加,由于离子的不同溶剂化作用,蜂毒肽色氨酸周围的直接环境发生了变化。有趣的是,蜂毒肽的旋转流动性似乎不受离子强度变化的影响。此外,蜂毒肽的荧光参数如寿命和丙烯酰胺猝灭表明,随着离子强度增加,膜界面中的水渗透增加。我们的结果表明,在生理相关的离子强度下,膜界面区域的溶剂动力学和水渗透受到显著影响。这些结果在离子强度对膜蛋白和膜活性肽的组织和动力学影响的整体背景下具有重要意义。

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